Zhejiang Sci-Tech University

Chine

Retour au propriétaire

1-89 de 89 pour Zhejiang Sci-Tech University Trier par
Recheche Texte
Affiner par
Juridiction
        International 53
        États-Unis 36
Date
Nouveautés (dernières 4 semaines) 2
2025 août 2
2025 juillet 1
2025 juin 1
2025 (AACJ) 7
Voir plus
Classe IPC
G01B 9/02 - Interféromètres 17
A01C 11/02 - Machines transplanteuses [repiqueuses] pour plants 5
B25J 9/00 - Manipulateurs à commande programmée 3
C08K 3/04 - Carbone 3
A61L 24/00 - Adhésifs ou ciments chirurgicauxAdhésifs pour dispositifs de colostomie 2
Voir plus
Statut
En Instance 11
Enregistré / En vigueur 78
Résultats pour  brevets

1.

HOLLOW EMBOLIC MICROSPHERE, PREPARATION METHOD THEREFOR, AND PHARMACEUTICAL COMPOSITION AND USE THEREOF

      
Numéro d'application 18860999
Statut En instance
Date de dépôt 2023-04-27
Date de la première publication 2025-08-28
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Kong, Xiangdong
  • Yi, Zihan
  • Zhao, Ruibo
  • Sun, Zhichao
  • Shen, Yang
  • Ma, Shitu
  • Luo, Dandan
  • Zu, Boer

Abrégé

A hollow embolic microsphere, a preparation method, and a pharmaceutical composition and use thereof, wherein: the hollow embolic microsphere is a microsphere prepared using a polymer material and having a unique shape and structure, and is suitable for transcatheter arterial embolization. The hollow embolic microsphere of the present disclosure can enter channels having different sizes, and has embolization effects on various target positions. The hollow microsphere is internally porous and has drug loading abilities, and drug release when loading drug can be easily controlled and the treatment effect is good. No emulsifier or surfactant is needed in the preparation of the hollow microsphere, reaction conditions are mild, and the process is simple. The obtained microsphere has a uniform shape and a controllable size, and is capable of controlling the embolization time. Various drugs including protein heat-sensitive drugs can be loaded, and the drug encapsulation efficiency can reach more than 70%.

Classes IPC  ?

  • A61L 24/00 - Adhésifs ou ciments chirurgicauxAdhésifs pour dispositifs de colostomie
  • A61L 24/08 - Polysaccharides
  • C08L 5/08 - ChitineSulfate de chondroïtineAcide hyaluroniqueLeurs dérivés

2.

MODIFIED CELLULOSE AND THE PREPARATION METHOD AND APPLICATION THEREOF

      
Numéro d'application 19183918
Statut En instance
Date de dépôt 2025-04-20
Date de la première publication 2025-08-14
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Tang, Yanjun
  • Dong, Xinhua
  • Xu, Feng
  • Zhang, Xueming
  • Chen, Tianying
  • Li, Feiyun
  • Wang, Xiaoyu

Abrégé

Provided is a modified cellulose, a preparation method and application thereof. The modified cellulose includes a flame retardant cellulose ester film, and the preparation method includes: obtaining a homogeneous cellulose solution by adding a cellulose to an ionic liquid cosolvent system; obtaining a cellulose phosphite ester solution by adding dimethyl phosphite and a catalyst to the homogeneous cellulose solution for performing a transesterification; obtaining cellulose phosphite ester powder by regeneration solvent precipitation, washing, centrifugation, and drying of the cellulose phosphite ester solution; and obtaining the flame retardant cellulose ester film by evaporating solvent after dissolving the cellulose phosphite ester powder in dimethyl sulfoxide.

Classes IPC  ?

  • C08B 5/00 - Préparation d'esters cellulosiques d'acides inorganiques
  • C08J 5/18 - Fabrication de bandes ou de feuilles

3.

COMPOSITE CATALYST MATERIAL BASED ON RAPID MICROPLASTIC DEGRADATION AND PREPARATION METHOD AND APPLICATION THEREOF

      
Numéro d'application 19086139
Statut En instance
Date de dépôt 2025-03-21
Date de la première publication 2025-07-03
Propriétaire Zhejiang Sci-Tech University (Chine)
Inventeur(s)
  • Yu, Deyou
  • Jiang, Wenbin
  • Xu, Licong
  • Wang, Shanli
  • Wu, Minghua

Abrégé

The invention provides a composite catalyst material and a preparation method and application thereof, and relates to the technical field of water environment treatment. The preparation method comprises the following steps: (1) adding an alkaline aqueous solution into microplastics, and then adding an accelerator for a hydrolysis reaction to obtain a first reaction solution; (2) adding acid into the first reaction solution to adjust pH to be acidic, and then adding ferric chloride for a solvothermal reaction to obtain a second reaction solution; and (3) carrying out post-treatment on the second reaction solution to obtain the composite catalyst material. The invention solves the technical problem of low resource utilization rate of microplastic degradation in the prior art.

Classes IPC  ?

  • B01J 31/16 - Catalyseurs contenant des hydrures, des complexes de coordination ou des composés organiques contenant des complexes de coordination
  • B01J 37/06 - Lavage
  • B01J 37/08 - Traitement thermique
  • C02F 1/78 - Traitement de l'eau, des eaux résiduaires ou des eaux d'égout par oxydation au moyen d'ozone
  • C02F 101/30 - Composés organiques

4.

BIAS CONTROL DEVICE AND METHOD BASED ON PULSE PHASE STABILIZATION FOR MACH-ZEHNDER MODULATOR

      
Numéro d'application 19021309
Statut En instance
Date de dépôt 2025-01-15
Date de la première publication 2025-06-05
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Chen, Benyong
  • Xie, Jiandong
  • Yan, Liping
  • Lin, Ye

Abrégé

The present disclosure discloses a bias control device and method based on pulse phase stabilization for adaptive Mach-Zehnder modulator. The device includes a mode-locked femtosecond laser, a Mach-Zehnder modulator, an optical fiber coupler, a photodetector, an amplifying filter, an analog-to-digital converter, an FPGA bias control module, a digital-to-analog converter, a bias amplifier, and an electrical pulse generator. The FPGA bias control module demodulates the amplitude of the high-frequency signal to determine and output the initial bias value, setting the operating point of MZM at the Null point. Simultaneously, the low-frequency signal phase at this moment is demodulated as the target value and compared with the demodulated phase of the real-time updated low-frequency signal to generate an error signal. Through PID, the bias voltage is adjusted in real time to achieve stability at the Null point.

Classes IPC  ?

  • G02F 1/01 - Dispositifs ou dispositions pour la commande de l'intensité, de la couleur, de la phase, de la polarisation ou de la direction de la lumière arrivant d'une source lumineuse indépendante, p. ex. commutation, ouverture de porte ou modulationOptique non linéaire pour la commande de l'intensité, de la phase, de la polarisation ou de la couleur
  • G02F 1/21 - Dispositifs ou dispositions pour la commande de l'intensité, de la couleur, de la phase, de la polarisation ou de la direction de la lumière arrivant d'une source lumineuse indépendante, p. ex. commutation, ouverture de porte ou modulationOptique non linéaire pour la commande de l'intensité, de la phase, de la polarisation ou de la couleur par interférence
  • G02F 1/225 - Dispositifs ou dispositions pour la commande de l'intensité, de la couleur, de la phase, de la polarisation ou de la direction de la lumière arrivant d'une source lumineuse indépendante, p. ex. commutation, ouverture de porte ou modulationOptique non linéaire pour la commande de l'intensité, de la phase, de la polarisation ou de la couleur par interférence dans une structure de guide d'ondes optique

5.

WATERLESS DIGITAL PRINTING METHOD

      
Numéro d'application 18756891
Statut En instance
Date de dépôt 2024-06-27
Date de la première publication 2025-02-27
Propriétaire
  • Hangzhou Boyang New Material Technology Co., Ltd. (Chine)
  • Hangzhou Wensli Silk Digital Printing Co., Ltd. (Chine)
  • Hangzhou Wensli Silk Sciences & Techniques Co., Ltd. (Chine)
  • Zhejiang Sci-Tech University (Chine)
Inventeur(s)
  • Wang, Yihan
  • Xu, Zhaomei
  • Ma, Tingfang
  • Li, Jianhua

Abrégé

The disclosure relates to the technical field of fabric printing, in particular to a waterless digital printing method, which includes: scanning and detecting a surface to be printed of a target fabric and determining a first type hydrophilic detection point and a second type hydrophilic detection point of the target fabric according to a yarn type; performing a primary hydrophilic detection on the first type hydrophilic detection point and the second type hydrophilic detection point and calculating a hydrophilicity stability parameter; determining a fabric preheating mode according to the hydrophilicity stability parameter, the fabric preheating mode including differential temperature preheating and uniform temperature preheating; performing digital ink-jet printing on the target fabric by a digital printing device when preheating is completed; and performing drying and curing in which the printed target fabric is placed into a drying chamber for heating and curing.

Classes IPC  ?

  • D06P 5/30 - Impression par jet d'encre
  • B41J 3/407 - Machines à écrire ou mécanismes d'impression ou de marquage sélectif caractérisés par le but dans lequel ils sont construits pour le marquage sur des matériaux particuliers
  • B41J 11/00 - Dispositifs ou agencements pour supporter ou manipuler un matériau de copie en feuilles ou en bandes

6.

JOINT OPTIMIZATION METHOD FOR TASK OFFLOADING AND CONTAINER CACHING IN CONTAINERIZED EDGE COMPUTING

      
Numéro d'application CN2024072273
Numéro de publication 2025/015876
Statut Délivré - en vigueur
Date de dépôt 2024-01-15
Date de publication 2025-01-23
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Xu, Weiqiang
  • Zhang, Qi
  • Luo, Shuyun
  • Luo, Hezhi

Abrégé

The present invention relates to the technical fields of task offloading and container caching. Disclosed is a joint optimization method for task offloading and container caching in containerized edge computing. The specific process is as follows: first, on the basis of a containerized edge computing environment, establishing a mathematical model; then, on the basis of the mathematical model, establishing a joint optimization problem of non-linear 0-1 programming; and finally solving a non-linear 0-1 programming problem. According to the present invention, a mathematical model of a containerized edge computing environment is established, and an optimization problem for minimizing the task processing time of a terminal device is established. In addition, the joint optimization method for task offloading and container caching is provided, and according to the method, a non-linear 0-1 programming problem which is originally difficult to solve is converted by means of an equivalent conversion method into a linear 0-1 programming problem which is easy to solve, thereby solving the problem of mutual coupling of a caching decision and a task offloading decision in edge computing, and reducing image file download time and container start time in a containerized edge computing system, so as to reduce the task processing time of terminal devices.

Classes IPC  ?

  • G06F 9/50 - Allocation de ressources, p. ex. de l'unité centrale de traitement [UCT]

7.

APPARATUS AND METHOD FOR PERFORMING BIAS CONTROL ON MACH-ZEHNDER MODULATOR ON BASIS OF PULSE PHASE STABILITY

      
Numéro d'application CN2024087499
Numéro de publication 2025/011117
Statut Délivré - en vigueur
Date de dépôt 2024-04-12
Date de publication 2025-01-16
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Chen, Benyong
  • Xie, Jiandong
  • Yan, Liping
  • Lin, Ye

Abrégé

Disclosed in the present invention are an apparatus and method for performing bias control on an adaptive Mach-Zehnder modulator (MZM) on the basis of pulse phase stability. The apparatus comprises a mode-locking femtosecond laser, an MZM, an optical fiber coupler, a photoelectric detector, an amplification filter, an analog-to-digital converter, an FPGA bias control module, a digital-to-analog converter, a bias amplifier and an electric pulse generator, wherein the FPGA bias control module demodulates a high-frequency signal amplitude and outputs an initial bias value, sets an MZM working point at a Null point, and also demodulates a low-frequency signal phase at this moment as a target value, compares same with a low-frequency signal demodulation phase which is updated in real time, so as to generate an error signal, and adjusts a bias voltage in real time by means of PID, so as to realize the stability at the Null point. In the present invention, a method for maintaining pulse phase stability is used to stabilize an MZM at a Null point, without introducing additional noise, thereby improving the bias control precision, ensuring the long-term stability of a working point, and realizing a high-extinction-ratio output of laser pulses at any frequency.

Classes IPC  ?

  • G02F 1/01 - Dispositifs ou dispositions pour la commande de l'intensité, de la couleur, de la phase, de la polarisation ou de la direction de la lumière arrivant d'une source lumineuse indépendante, p. ex. commutation, ouverture de porte ou modulationOptique non linéaire pour la commande de l'intensité, de la phase, de la polarisation ou de la couleur

8.

DEEP LEARNING-BASED DIGITAL HOLOGRAPHIC CONTINUOUS PHASE NOISE REDUCTION METHOD FOR MICROSTRUCTURE MEASUREMENT

      
Numéro d'application 18599084
Statut En instance
Date de dépôt 2024-03-07
Date de la première publication 2024-10-31
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Chen, Benyong
  • Tang, Jianjun
  • Yan, Liping
  • Huang, Liu

Abrégé

A deep learning-based digital holographic continuous phase noise reduction method for microstructure measurement is provided. A MEMS microstructure is simulated to generate an object phase image through generation of random matrix superposition, noise in a digital holographic continuous phase map is simultaneously simulated to generate a noise grayscale image, and a simulation data set is thus created. An end-to-end convolutional neural network is designed, and a trained convolutional neural network is trained and obtained. A holographic interference pattern of an object under measurement is collected by photographing, and after spectrum extraction, angular spectrum diffraction, phase unwrapping, and distortion compensation, a continuous phase map containing only the object phase and noise is obtained and input into the trained convolutional neural network to obtain an object phase map. A simulation data set is accurately created in the disclosure, thereby the difficulty of collecting a large amount of experimental data is avoided.

Classes IPC  ?

  • G03H 1/08 - Procédés ou appareils pour produire des hologrammes pour faire des hologrammes synthétiques
  • G01B 11/25 - Dispositions pour la mesure caractérisées par l'utilisation de techniques optiques pour mesurer des contours ou des courbes en projetant un motif, p. ex. des franges de moiré, sur l'objet
  • G03H 1/16 - Procédés ou appareils pour produire des hologrammes utilisant une transformation de Fourier

9.

MICROSTRUCTURE MEASUREMENT DIGITAL HOLOGRAPHIC CONTINUOUS PHASE NOISE REDUCTION METHOD BASED ON DEEP LEARNING

      
Numéro d'application CN2023100250
Numéro de publication 2024/221567
Statut Délivré - en vigueur
Date de dépôt 2023-06-14
Date de publication 2024-10-31
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Chen, Benyong
  • Tang, Jianjun
  • Yan, Liping
  • Huang, Liu

Abrégé

Disclosed in the present invention is a microstructure measurement digital holographic continuous phase noise reduction method based on deep learning. The method comprises: simulating a MEMS microstructure by means of a random matrix generation and superposition mode to generate an object phase image, simultaneously simulating noises in a digital holographic continuous phase diagram to generate a noise grayscale image, and further making a simulation data set; designing an end-to-end convolutional neural network, and training same to obtain a trained convolutional neural network; and collecting a holographic interferogram of a measured object by means of photographing, carrying out spectrum extraction, angular spectrum diffraction, phase unwrapping and distortion compensation to obtain a continuous phase diagram only containing an object phase and noises, and inputting the continuous phase diagram into the trained convolutional neural network to obtain an object phase diagram. The present invention accurately makes the simulation data set so as to avoid the difficulty of requiring collection of a large amount of experimental data, and adds a subspace projection module into a network structure, greatly improving the noise reduction performance, and reducing the number of network parameters, thus having the advantages of high operational speed and good noise reduction performance.

Classes IPC  ?

  • G06T 5/00 - Amélioration ou restauration d'image

10.

SUN-RESISTANT GREEN LIQUID DISPERSE DYE AND PREPARATION METHOD THEREFOR

      
Numéro d'application CN2023100992
Numéro de publication 2024/198112
Statut Délivré - en vigueur
Date de dépôt 2023-06-19
Date de publication 2024-10-03
Propriétaire
  • MODERN TEXTILE TECHNOLOGY INNOVATION CENTER (JIANHU LABORATORY) (Chine)
  • ZHEJIANG BOAO NEW MATERIALS CO., LTD (Chine)
  • ZHEJIANG UNIVERSITY OF TECHNOLOGY SHANGYU INDUSTRIAL TECHNOLOGY RESEARCH INSTITUTE CO., LTD (Chine)
  • ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Qi, Dongming
  • Cui, Zhihua
  • Guo, Lixue
  • Huang, Junfeng
  • Song, Lixiang
  • Shang, Zuzheng

Abrégé

The present invention belongs to the field of dyes, and particularly relates to a sun-resistant green liquid disperse dye and a preparation method therefor. The formula of the sun-resistant green liquid disperse dye of the present invention comprises the following components, in percentages by weight: 5-24% of a yellow dye, 6-25% of a blue dye, 9-11% of a composite dispersing agent and the balance of water, wherein the sum of the weight of the yellow dye and the blue dye accounts for 28-32% of the total weight of the sun-resistant green liquid disperse dye. The sun-resistant green disperse dye of the present invention overcomes the defects of serious wastewater pollution, dust pollution, etc., of a powdery disperse dye, has good color fastness to sun, and also enriches green varieties lacking in disperse dyes.

Classes IPC  ?

  • C09B 67/22 - Mélanges de pigments ou de colorants différents, ou de solutions solides de pigments ou de colorants
  • C09B 67/20 - Préparations à base de pigments organiques
  • C09B 67/40 - Préparations à base de colorants dispersés à l'état liquide
  • C09B 67/36 - Préparations à base de colorants azoïques
  • C09B 67/46 - Dispersions

11.

COMPOSITE CATALYST MATERIAL BASED ON RAPID DEGRADATION OF MICRO-PLASTICS, AND PREPARATION METHOD THEREFOR AND USE THEREOF

      
Numéro d'application CN2024093700
Numéro de publication 2024/193726
Statut Délivré - en vigueur
Date de dépôt 2024-05-16
Date de publication 2024-09-26
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Yu, Deyou
  • Jiang, Wenbin
  • Xu, Licong
  • Wang, Shanli
  • Wu, Minghua

Abrégé

The present invention relates to the technical field of water environment treatment, and provides a composite catalyst material and a preparation method therefor and the use thereof. The preparation method comprises the following steps: (1) adding an alkaline aqueous solution to micro-plastics, and then adding an accelerator to perform a hydrolysis reaction, so as to obtain a first reaction solution; (2) adding an acid to the first reaction solution to adjust the pH until acidic, and then adding ferric chloride to perform a solvothermal reaction, so as to obtain a second reaction solution; and (3) subjecting the second reaction liquid to a post-treatment to obtain a composite catalyst material, such that the technical problem of the low resource utilization rate of micro-plastic degradation in the prior art is solved.

Classes IPC  ?

  • B01J 31/22 - Complexes organiques
  • B01J 37/08 - Traitement thermique
  • C02F 1/72 - Traitement de l'eau, des eaux résiduaires ou des eaux d'égout par oxydation
  • C08G 83/00 - Composés macromoléculaires non prévus dans les groupes
  • C02F 101/30 - Composés organiques

12.

Purification method for detection of strontium isotope in silk cultural relic

      
Numéro d'application 18028216
Numéro de brevet 12313508
Statut Délivré - en vigueur
Date de dépôt 2022-06-30
Date de la première publication 2024-09-12
Date d'octroi 2025-05-27
Propriétaire
  • China National Silk Museum (Chine)
  • Zhejiang Sci-Tech University (Chine)
Inventeur(s)
  • Zhou, Yang
  • Liu, Yong
  • Peng, Zhiqin
  • Wang, Bing
  • Zheng, Hailing
  • Yang, Hailiang
  • Jia, Liling
  • Li, Hao
  • Yang, Dan
  • Jia, Rui

Abrégé

84Sr solution and an elution solution into the purified resin separation column in sequence to obtain a separated and purified strontium solution.

Classes IPC  ?

13.

DIGITAL HOLOGRAPHIC WRAPPED PHASE ABERRATION COMPENSATION METHOD BASED ON DEEP LEARNING

      
Numéro d'application 18645399
Statut En instance
Date de dépôt 2024-04-25
Date de la première publication 2024-08-15
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Chen, Benyong
  • Huang, Liu
  • Tang, Jianjun
  • Yan, Liping

Abrégé

In a digital holographic wrapped phase aberration compensation method based on deep learning, a random Zernike polynomial coefficient and a corresponding wrapped phase map are generated by a computer and are respectively treated as a learning label and a network to train a neural network model. A digital holographic optical setup is built to record a hologram of a sample to be measured, the wrapped phase map is inputted into the trained neural network model after numerical reconstruction, and the Zernike polynomial coefficient is outputted to reconstruct a phase aberration distribution and to compensate complex amplitude in a spatial domain. Phase filtering and unwrapping are performed on the compensated wrapped phase map, and Zernike polynomial fitting based on background segmentation is performed on the unwrapped phase to compensate for residual aberration.

Classes IPC  ?

  • G06T 5/80 - Correction géométrique
  • G03H 1/04 - Procédés ou appareils pour produire des hologrammes
  • G06T 3/18 - Déformation d’images, p. ex. réarrangement de pixels individuellement
  • G06T 5/20 - Amélioration ou restauration d'image utilisant des opérateurs locaux
  • G06T 7/136 - DécoupageDétection de bords impliquant un seuillage

14.

METHOD FOR PREDICTING, REGULATING AND CONTROLLING WEAR CHARACTERISTIC OF FLOW CHANNEL IN VALVE

      
Numéro d'application 18559564
Statut En instance
Date de dépôt 2021-12-27
Date de la première publication 2024-07-18
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Jin, Haozhe
  • Ou, Guofu
  • Zhu, Zuchao
  • Wang, Chao

Abrégé

A method for predicting, regulating and controlling a wear characteristic of a flow channel in a valve. The method comprises: pasting an aluminum sheet in a valve core, and testing a wear rate; regulating inlet pressure, and obtaining distribution characteristics of a pressure field and a velocity field; establishing an association relationship between the wear rate and pressure and a flow velocity; increasing the inlet pressure, and drawing a discrete data curve and a continuous curve; obtaining a discrete data change curve and a continuous curve of the wear rate along with an opening degree of the valve core; obtaining an association relationship graph between the wear rate of the aluminum sheet and the inlet pressure and the opening degree of the valve core; and performing comparison and determination on a real-time wear rate actual value of the aluminum sheet and a critical wear rate value.

Classes IPC  ?

  • F16K 25/04 - Dispositions pour empêcher l'usure, non prévues ailleurs
  • G05D 9/12 - Commande du niveau, p. ex. en commandant la quantité du matériau emmagasiné dans un réservoir caractérisée par l'utilisation de moyens électriques

15.

METHOD FOR IDENTIFYING AND ELIMINATING AMMONIUM SALT DEPOSITION CHARACTERISTICS IN PIPE BUNDLE OF HYDROGENATION AIR COOLER

      
Numéro d'application 18559565
Statut En instance
Date de dépôt 2022-04-26
Date de la première publication 2024-07-11
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Jin, Haozhe
  • Ou, Guofu
  • Kuang, Jianping
  • Li, Xueyong
  • Zhu, Zuchao
  • Fu, Dexiao
  • Xiao, Shumeng

Abrégé

Disclosed is a method for identifying and eliminating ammonium salt deposition characteristics in a pipe of a hydrogenation air cooler. A multiphase flow medium enters an inlet pipe box of a hydrogenation air cooler; cross sections and temperature transmitters are arranged on a pipe bundle of the air cooler in the axial direction; a temperature signal value is monitored and transmitted to a single-chip microcomputer for analysis; an infrared thermal imager performs photographing, and transmits data to determine that an ammonium salt deposition risk is present under this working condition; a monitored temperature value is calculated, an ammonium salt deposition risk identification model is established, and ammonium salt deposits are peeled off from the inner wall of the pipe bundle of the air cooler by means of vibration of the pipe bundle caused by the intermittent frequent switching-on/switching-off of an electromagnet and a magnetic block, and ultrasonic signals.

Classes IPC  ?

  • F28G 7/00 - Nettoyage par vibration
  • F28G 15/00 - NETTOYAGE DES SURFACES INTERNES OU EXTERNES DES CONDUITS DES ÉCHANGEURS DE CHALEUR OU DE TRANSFERT DE CHALEUR, p. ex. TUBES D'EAU DE CHAUDIÈRES Parties constitutives
  • G01J 5/00 - Pyrométrie des radiations, p. ex. thermométrie infrarouge ou optique
  • G01J 5/48 - ThermographieTechniques utilisant des moyens entièrement visuels

16.

PREPARATION METHOD FOR IMMUNOMAGNETIC BEAD TEST STRIP FOR RAPIDLY DETECTING TRACE PROTEIN IN CULTURAL RELICS, AND APPLICATION THEREOF

      
Numéro d'application CN2022138004
Numéro de publication 2024/119493
Statut Délivré - en vigueur
Date de dépôt 2022-12-09
Date de publication 2024-06-13
Propriétaire
  • CHINA NATIONAL SILK MUSEUM (Chine)
  • ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Zheng, Hailing
  • Zhou, Yang
  • Yang, Hailiang
  • Wang, Bing
  • Peng, Zhiqin
  • Jia, Liling

Abrégé

The invention relates to the technical field of detecting ancient silk fabric, and in particular to a preparation method for an immunomagnetic bead test strip for rapidly detecting trace protein in cultural relics, and to an application thereof. The preparation method comprises the following steps: (1) performing a coupling reaction between carboxyl magnetic beads and protein antibodies, performing magnetic separation to remove supernatant, and successively washing in buffer solution and cleaning agent to obtain immunomagnetic beads; (2) spraying the immunomagnetic beads onto a pretreated nitrocellulose membrane, and drying for later use; respectively spraying a diluted antibody solution I and a diluted antibody solution II onto a detection line and a quality control line of the nitrocellulose membrane, and drying for later use; (3) successively assembling a sample pad, an immunomagnetic bead combination pad, the nitrocellulose membrane, and an absorbent pad, and cutting, to obtain immunomagnetic bead test strips, then drying, sealing, and storing. The prepared test strip enriches trace proteins while simultaneously achieving rapid and sensitive detection, is convenient to operate on archaeological sites, and is less time consuming.

Classes IPC  ?

  • G01N 33/543 - Tests immunologiquesTests faisant intervenir la formation de liaisons biospécifiquesMatériaux à cet effet avec un support insoluble pour l'immobilisation de composés immunochimiques
  • G01N 33/68 - Analyse chimique de matériau biologique, p. ex. de sang ou d'urineTest par des méthodes faisant intervenir la formation de liaisons biospécifiques par ligandsTest immunologique faisant intervenir des protéines, peptides ou amino-acides

17.

DIGITAL HOLOGRAPHIC WRAPPED PHASE DISTORTION COMPENSATION METHOD BASED ON DEEP LEARNING

      
Numéro d'application CN2023074510
Numéro de publication 2024/087406
Statut Délivré - en vigueur
Date de dépôt 2023-02-06
Date de publication 2024-05-02
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Chen, Benyong
  • Huang, Liu
  • Tang, Jianjun
  • Yan, Liping

Abrégé

A digital holographic wrapped phase distortion compensation method based on deep learning. The method comprises: generating, by means of a computer, a random Zernike polynomial coefficient and a corresponding wrapped phase map that are respectively used as a learning label and a neural network model for network training; building a digital holographic optical path to record a hologram of a sample to be tested, after numerical reconstruction, inputting a wrapped phase map of said sample into the trained neural network model, outputting the Zernike polynomial coefficient to reconstruct phase distortion distribution, and compensating for an object light complex amplitude in a space domain; and carrying out phase filtering and unwrapping on the compensated wrapped phase map, and carrying out background segmentation-based Zernike polynomial fitting on the unwrapped phase to compensate for residual distortion.

Classes IPC  ?

  • G06T 5/00 - Amélioration ou restauration d'image

18.

Energy-saving and environment-friendly method for preparing nanocellulose based flexible conductive film

      
Numéro d'application 18504118
Numéro de brevet 12129361
Statut Délivré - en vigueur
Date de dépôt 2023-11-07
Date de la première publication 2024-02-29
Date d'octroi 2024-10-29
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Tang, Yanjun
  • Zhao, Xingfei

Abrégé

The present disclosure discloses methods for preparing a composite film based on reduced graphene oxide, cellulose nanocrystals, and cellulose nanofibers. The method mainly includes: 1. preparing a suspension mixed with graphite oxide and cellulose; 2. centrifuging the suspension obtained in the step (1) and washing the sediment after centrifuging with deionized water to obtain a solution, homogenizing the solution in a high-pressure homogenizer to obtain a suspension mixed with graphene oxide, cellulose nanocrystals, and cellulose nanofibers; and 3. drying the suspension mixed with graphene oxide, cellulose nanocrystals, and cellulose nanofibers in a petri dish, and soaking a dried film in a hydroiodic acid solution; and washing the soaked film with deionized water to obtain the composite film of reduced graphene oxide, cellulose nanocrystals, and cellulose nanofibers. The composite film obtained has a higher specific capacitance and a better cycle stability than pure reduced graphene oxide obtained under a same preparation condition.

Classes IPC  ?

19.

METHOD FOR PREPARING FIBER-BASED DRESSING HAVING DIRECTIONAL EXUDATE-GUIDING FUNCTION

      
Numéro d'application CN2023075554
Numéro de publication 2024/011901
Statut Délivré - en vigueur
Date de dépôt 2023-02-11
Date de publication 2024-01-18
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Wu, Jindan
  • Qi, Dongming
  • Liu, Lei
  • Gao, Yujie
  • Qiu, Zhiye

Abrégé

A method for preparing a fiber-based dressing having a directional exudate-guiding function. The method comprises: step I, respectively preparing a spinning solution of a hydrophobic layer, a spinning solution of a transition layer A, a spinning solution of a transition layer B, and a spinning solution of a transition layer C, wherein the spinning solutions have different hydrophobicity; step II, sequentially forming, by means of electrospinning, the transition layer C, the transition layer B, the transition layer A and the hydrophobic layer on a surface of a cotton fabric, so as to obtain a composite membrane; step III, forming, by means of a mold, hemispherical bulges and tapered channels on a surface of the composite membrane; step IV, cutting the composite membrane obtained in step III into an A-type composite membrane having an exudate guiding strip at a side edge, and cutting the composite membrane obtained in step II into a B-type composite membrane, which has no exudate guiding strip and matches the A-type composite membrane in terms of size; and step V, fitting the A-type composite membrane to the B-type composite membrane, and sealing the periphery thereof to obtain a wound dressing. The fiber-based dressing is provided with a plurality of transition layers having gradient wettability, such that a wound exudate can be directionally guided out and collected; moreover, the hemispherical bulges and the tapered channels are constructed on a surface of the dressing, such that the exudate guiding efficiency can be regulated by means of an external force.

Classes IPC  ?

  • A61F 13/02 - Bandages ou pansements adhésifs
  • A61L 15/18 - Bandages, pansements ou garnitures absorbant les fluides physiologiques tels que l'urine, le sang, p. ex. serviettes hygiéniques, tampons contenant des matériaux inorganiques

20.

PURIFICATION METHOD FOR STRONTIUM ISOTOPE DETECTION OF SILK CULTURAL RELICS

      
Numéro d'application CN2022102605
Numéro de publication 2023/245710
Statut Délivré - en vigueur
Date de dépôt 2022-06-30
Date de publication 2023-12-28
Propriétaire
  • CHINA NATIONAL SILK MUSEUM (Chine)
  • ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Zhou, Yang
  • Liu, Yong
  • Peng, Zhiqin
  • Wang, Bing
  • Zheng, Hailing
  • Yang, Hailiang
  • Jia, Liling
  • Li, Hao
  • Yang, Dan
  • Jia, Rui

Abrégé

A purification method for strontium isotope detection of silk cultural relics. The invention relates to the technical field of cultural relic detection. The method comprises: (1) the enrichment of strontium isotopes: after the cleaning of silk cultural relics, adding same to a digestion agent for microwave digestion, then drying same by means of evaporation, adding the dried product to a nitric acid solution for centrifugal separation, and extracting a supernatant; and (2) the purification of the strontium isotopes: first mixing 4',4''(5')-di-tert-butyldicyclohexyl-18-crown-6 with a defoaming agent, adsorbing the mixture into a purification resin separation column, and pre-cleaning the purification resin separation column with a nitric acid solution; injecting the supernatant in step (1) into the purification resin separation column by using the nitric acid solution as carrier liquid; and sequentially injecting a 84Sr solution and an eluent into the purification resin separation column to obtain a separated and purified strontium solution. The method can eliminate the interference of other impurity ions, reduce the loss of strontium, and achieve the effective enrichment and purification of strontium in silk.

Classes IPC  ?

  • G01N 1/40 - Concentration des échantillons
  • G01N 1/44 - Traitement d'échantillons mettant en œuvre un rayonnement, p. ex. de la chaleur
  • G01N 1/34 - PurificationNettoyage
  • G01N 1/28 - Préparation d'échantillons pour l'analyse
  • G01N 27/62 - Recherche ou analyse des matériaux par l'emploi de moyens électriques, électrochimiques ou magnétiques en recherchant l'ionisation des gaz, p. ex. des aérosolsRecherche ou analyse des matériaux par l'emploi de moyens électriques, électrochimiques ou magnétiques en recherchant les décharges électriques, p. ex. l'émission cathodique

21.

Preparation method of composite films based on cellulose nanocrystals, cellulose nanofibers and reduced graphene oxide

      
Numéro d'application 18179337
Numéro de brevet 11845853
Statut Délivré - en vigueur
Date de dépôt 2023-03-06
Date de la première publication 2023-11-23
Date d'octroi 2023-12-19
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Tang, Yanjun
  • Ding, Zejun
  • Chen, Tianying

Abrégé

The present disclosure discloses methods for preparing a composite film based on reduced graphene oxide, cellulose nanocrystals, and cellulose nanofibers. The method mainly includes: 1. preparing a suspension mixed with graphite oxide and cellulose; 2. centrifuging the suspension obtained in the step (1) and washing the sediment after centrifuging with deionized water to obtain a solution, homogenizing the solution in a high-pressure homogenizer to obtain a suspension mixed with graphene oxide, cellulose nanocrystals, and cellulose nanofibers; and 3. drying the suspension mixed with graphene oxide, cellulose nanocrystals, and cellulose nanofibers in a petri dish, and soaking a dried film in a hydroiodic acid solution; and washing the soaked film with deionized water to obtain the composite film of reduced graphene oxide, cellulose nanocrystals, and cellulose nanofibers. The composite film obtained has a higher specific capacitance and a better cycle stability than pure reduced graphene oxide obtained under a same preparation condition.

Classes IPC  ?

22.

PREPARATION METHOD FOR RGO/CNC/CNF COMPOSITE THIN FILM

      
Numéro d'application CN2022105806
Numéro de publication 2023/221279
Statut Délivré - en vigueur
Date de dépôt 2022-07-14
Date de publication 2023-11-23
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Tang, Yanjun
  • Ding, Zejun
  • Chen, Tianying

Abrégé

Disclosed in the present invention is a preparation method for an RGO/CNC/CNF composite thin film. The method mainly comprises: 1. preparing a graphite oxide/cellulose mixed suspension; 2. centrifugally washing the graphite oxide/cellulose mixed suspension with deionized water, and then homogenizing same in a high-pressure homogenizer to obtain a graphene oxide/cellulose nanocrystal/cellulose nanofiber mixed suspension; and 3. drying the graphene oxide/cellulose nanocrystal/cellulose nanofiber mixed suspension in a culture dish, soaking the dried thin film in a hydroiodic acid solution, and finally washing the soaked thin film with deionized water to obtain a reduced graphene oxide/cellulose nanocrystal/cellulose nanofiber composite thin film. The composite thin film obtained in the present invention has higher specific capacitance and more excellent cycle stability than reduced pure graphene oxide obtained under the same preparation conditions.

Classes IPC  ?

23.

HOLLOW EMBOLIC MICROSPHERE, PREPARATION METHOD THEREFOR, AND PHARMACEUTICAL COMPOSITION AND USE THEREOF

      
Numéro d'application CN2023091079
Numéro de publication 2023/208094
Statut Délivré - en vigueur
Date de dépôt 2023-04-27
Date de publication 2023-11-02
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Kong, Xiangdong
  • Yi, Zihan
  • Zhao, Ruibo
  • Sun, Zhichao
  • Shen, Yang
  • Ma, Shitu
  • Luo, Dandan
  • Zu, Boer

Abrégé

A hollow embolic microsphere, a preparation method therefor, and a pharmaceutical composition and use thereof. The hollow embolic microsphere is a microsphere having a unique shape and structure prepared by using a polymer material, and is suitable for transcatheter arterial embolization. The hollow embolic microsphere disclosed by the invention can enter different channels having different sizes, and has a good embolization effect on various target positions. The hollow microsphere is internally porous, and has drug loading abilities. Drug release after drug loading is easy to control, and the treatment effect is good. No emulsifier and surfactant need to be used in the preparation of the hollow microsphere, reaction conditions are mild, and the process is simple. The obtained microsphere is uniform in shape and controllable in size, and the embolization time can be controlled. Various drugs including protein heat-sensitive drugs can be loaded, and the drug encapsulation efficiency can reach more than 70%.

Classes IPC  ?

  • A61L 24/08 - Polysaccharides
  • A61L 24/00 - Adhésifs ou ciments chirurgicauxAdhésifs pour dispositifs de colostomie
  • A61L 31/04 - Matériaux macromoléculaires
  • A61L 31/14 - Matériaux caractérisés par leur fonction ou leurs propriétés physiques
  • A61L 31/16 - Matériaux biologiquement actifs, p. ex. substances thérapeutiques
  • A61L 31/18 - Matériaux au moins partiellement opaques aux rayons X ou au laser
  • A61K 47/69 - Préparations médicinales caractérisées par les ingrédients non actifs utilisés, p. ex. les supports ou les additifs inertesAgents de ciblage ou de modification chimiquement liés à l’ingrédient actif l’ingrédient non actif étant chimiquement lié à l’ingrédient actif, p. ex. conjugués polymère-médicament le conjugué étant caractérisé par sa forme physique ou sa forme galénique, p. ex. émulsion, particule, complexe d’inclusion, stent ou kit
  • A61K 47/36 - PolysaccharidesLeurs dérivés, p. ex. gommes, amidon, alginate, dextrine, acide hyaluronique, chitosane, inuline, agar-agar ou pectine
  • A61K 45/00 - Préparations médicinales contenant des ingrédients actifs non prévus dans les groupes

24.

SOLID BIMETALLIC TITANIUM-BASED POLYESTER CATALYST, PREPARATION METHOD THEREFOR, AND USE THEREOF

      
Numéro d'application CN2023087944
Numéro de publication 2023/202449
Statut Délivré - en vigueur
Date de dépôt 2023-04-13
Date de publication 2023-10-26
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Chen, Shichang
  • Xie, Shangdong
  • Chen, Wenxing

Abrégé

A solid bimetallic titanium-based polyester catalyst, a preparation method therefor, and use thereof. The preparation method for the catalyst comprises: (1) adding a titanium compound to an aqueous solution of a carboxylic acid compound and/or a carboxylic acid derivative, heating, then slowly adding an alcohol compound, and carrying out a reaction to obtain an intermediate product, namely a complex formed by coordination of titanium, alcohol hydroxyl, and carboxylic acid hydroxyl; and (2) adding the intermediate product to an anhydrous alcohol compound, adding a metal salt, and carrying out a reaction to obtain a finished product. The solid bimetallic titanium-based polyester catalyst with high activity is prepared by means of strictly regulating and controlling the types and proportions of the organic acids, alcohols, and metal compounds that coordinate with the titanium compound. When applied to polyester synthesis, the catalyst can effectively inhibit side reactions to obtain a high-quality polymerized product.

Classes IPC  ?

  • C08G 63/85 - Germanium, étain, plomb, arsenic, antimoine, bismuth, titane, zirconium, hafnium, vanadium, niobium, tantale ou leurs composés
  • C08G 63/83 - Métaux alcalins, métaux alcalino-terreux, béryllium, magnésium, cuivre, argent, or, zinc, cadmium, mercure, manganèse ou leurs composés
  • C08G 63/84 - Bore, aluminium, gallium, indium, thallium, métaux des terres rares ou leurs composés
  • C08G 63/82 - Procédés de préparation caractérisés par le catalyseur utilisé
  • C08G 63/183 - Acides téréphtaliques
  • C08G 63/672 - Acides dicarboxyliques et composés dihydroxylés
  • C08G 63/16 - Acides dicarboxyliques et composés dihydroxylés
  • C07F 7/28 - Composés du titane

25.

Environmentally-friendly flexible conductive polyurethane (PU) and preparation method thereof

      
Numéro d'application 17739176
Numéro de brevet 11987662
Statut Délivré - en vigueur
Date de dépôt 2022-05-09
Date de la première publication 2023-08-17
Date d'octroi 2024-05-21
Propriétaire
  • SHAOXING-KEQIAO INSTISUTE OF ZHEJIANG SCI-TECH UNIVERSITY CO., LTD. (Chine)
  • ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Qi, Dongming
  • Huang, Zhichao
  • Tian, Qianjun
  • Wang, Lin
  • Liu, Chenghai

Abrégé

An environmentally-friendly flexible conductive polyurethane (PU) and a preparation method thereof are disclosed. The environmentally-friendly flexible conductive PU is prepared by subjecting a mixture of a component A and a component B in a specified mass ratio to in-situ solvent-free polymerization, where the component A is prepared from a polyol, a T-type chain extender, a diselenide diol, high-conductivity carbon black, a dispersing agent, a catalyst, and a leveling agent, and the component B is prepared from a polyisocyanate, a polyol, a multi-walled carbon nanotube (MWCNT), and a dispersing agent. The PU has a reliable electrically-conductive function, and shows a self-healing function under room temperature or light conditions when damaged, wherein a microphase separation value HBI (0.5 to 3.0) of soft and hard segment molecules can be adjusted to achieve different hand touches and different mechanical properties, and an organic pollutant emission (volatile organic compound (VOC)) is less than 50 mg/kg.

Classes IPC  ?

  • C08G 18/75 - Polyisocyanates ou polyisothiocyanates cycliques cycloaliphatiques
  • C08G 18/24 - Catalyseurs contenant des composés métalliques de l'étain
  • C08G 18/38 - Composés de bas poids moléculaire contenant des hétéro-atomes autres que l'oxygène
  • C08G 18/40 - Composés de haut poids moléculaire
  • C08G 18/42 - Polycondensats contenant des groupes ester carboxylique ou carbonique dans la chaîne principale
  • C08G 18/48 - Polyéthers
  • C08G 18/66 - Composés des groupes , ou
  • C08K 3/04 - Carbone
  • C08K 7/18 - Sphères pleines inorganiques
  • H01B 1/24 - Matériau conducteur dispersé dans un matériau organique non conducteur le matériau conducteur comportant des compositions à base de carbone-silicium, du carbone ou du silicium
  • B82Y 30/00 - Nanotechnologie pour matériaux ou science des surfaces, p. ex. nanocomposites
  • B82Y 40/00 - Fabrication ou traitement des nanostructures

26.

ENVIRONMENTALLY-FRIENDLY FLEXIBLE CONDUCTIVE POLYURETHANE AND PREPARATION METHOD THEREFOR

      
Numéro d'application CN2022086127
Numéro de publication 2023/151174
Statut Délivré - en vigueur
Date de dépôt 2022-04-11
Date de publication 2023-08-17
Propriétaire
  • SHAOXING-KEQIAO INSTISUTE OF ZHEJIANG SCI-TECH UNIVERSITY CO., LTD. (Chine)
  • ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Qi, Dongming
  • Huang, Zhichao
  • Tian, Qianjun
  • Wang, Lin
  • Liu, Chenghai

Abrégé

Disclosed in the present invention are environmentally-friendly flexible conductive polyurethane and a preparation method therefor. The environmentally-friendly flexible conductive polyurethane is prepared from a component A and a component B by means of a two-component prepolymer in-situ solvent-free blending polymerization method according to a certain mass ratio. The component A is composed of polyol, a T-chain extender, diselenide diol, high conductivity carbon black, a dispersant, a catalyst, a leveling agent, etc. The component B is composed of polyisocyanate, polyol, multi-walled carbon nanotubes, a dispersant, etc. According to the present invention, the polyurethane has a reliable conductive function, the damaged conductive polyurethane material has self-healing performance under the condition of room temperature or illumination, and different hand feelings and different mechanical properties can be regulated and controlled by adjusting the microphase separation value HBI (0.5-3.0) of soft and hard segment molecules. The organic pollutant emission (VOCs) is lower than 50 mg/kg, and the polyurethane is green and environmentally-friendly, and has a good industrial application prospect.

Classes IPC  ?

  • C09D 175/08 - Polyuréthanes à partir de polyéthers
  • C08G 18/32 - Composés polyhydroxylésPolyaminesHydroxyamines

27.

DIVIDE-BY-TWO LATCH BUFFER CIRCUIT FOR DETERMINISTIC FIELDBUS NETWORK DATA FORWARDING, AND APPLICATION THEREOF

      
Numéro d'application CN2022112953
Numéro de publication 2023/142444
Statut Délivré - en vigueur
Date de dépôt 2022-08-17
Date de publication 2023-08-03
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Xu, Weiqiang
  • Wang, Chengqun
  • Shang, Yanjuan

Abrégé

The present invention provides a divide-by-two latch circuit for deterministic fieldbus network data forwarding, and an application thereof. The circuit comprises: a data buffer, two cache units being provided in the data buffer; a divide-by-two enable latch signal generation module for generating a first divide-by-two latch signal and a second divide-by-two latch signal which have opposite levels, and selecting a data cache unit of the data buffer on the basis of the first divide-by-two latch signal, the second divide-by-two latch signal and a reception enable signal; and a shift register comprising two flip-flops, i.e., a first flip-flop and a second flip-flop which are initialized to be in opposite output states, wherein the first flip-flop is connected to the second flip-flop to realize a shift operation, and finally, data stored in the data buffer unit is selected and read on the basis of low-order and read enable signals in the shift register composed of the two flip-flops. The present invention can be applied to a scenario of deterministic fieldbus network data forwarding as an intra-frequency heterogeneous data cross-time domain circuit, thereby achieving the effects of high resource utilization rate and stability.

Classes IPC  ?

  • H04L 43/08 - Surveillance ou test en fonction de métriques spécifiques, p. ex. la qualité du service [QoS], la consommation d’énergie ou les paramètres environnementaux

28.

Frequency-halving latch buffer circuit for deterministic field bus network data forwarding and application thereof

      
Numéro d'application 17938733
Numéro de brevet 12101088
Statut Délivré - en vigueur
Date de dépôt 2022-10-07
Date de la première publication 2023-07-27
Date d'octroi 2024-09-24
Propriétaire Zhejiang Sci-Tech University (Chine)
Inventeur(s)
  • Xu, Weiqiang
  • Wang, Chengqun
  • Shang, Yanjuan

Abrégé

The present invention provides a frequency-halving latch circuit for deterministic field bus network data forwarding and application thereof. The frequency-halving latch circuit includes a data buffer equipped with two buffer units; a frequency-halving enable latch signal generation module for generating a first frequency-halving latch signal and a second frequency-halving latch signal with opposite levels, and selecting data buffer units of the data buffer based on the first frequency-halving latch signal, the second frequency-halving latch signal and a receiving enable signal; and a shift register including a first trigger and a second trigger which are initialized to opposite output states, the first trigger and the second trigger is connected to realize a shift operation, and data stored in the data buffer units is finally selected and read based on a low order in the shift register composed of the two triggers and a read enable signal. The frequency-halving latch circuit can be applied to a scenario of deterministic field bus network data forwarding as a same-frequency out-of-phase data cross-clock domain circuit, with high resource utilization rate and stability.

Classes IPC  ?

  • H03K 19/00 - Circuits logiques, c.-à-d. ayant au moins deux entrées agissant sur une sortieCircuits d'inversion
  • G06F 13/36 - Gestion de demandes d'interconnexion ou de transfert pour l'accès au bus ou au système à bus communs
  • H03K 3/037 - Circuits bistables
  • H03K 17/00 - Commutation ou ouverture de porte électronique, c.-à-d. par d'autres moyens que la fermeture et l'ouverture de contacts
  • H03K 19/0175 - Dispositions pour le couplageDispositions pour l'interface
  • H03K 23/40 - Signaux d'ouverture de porte ou d'horloge appliqués à tous les étages, c.-à-d. compteurs synchrones

29.

MESOPOROUS GLASS FIBER AND PREPARATION METHOD THEREFOR AND GRADED POROUS FIBER COTTON AND PREPARATION METHOD THEREFOR

      
Numéro d'application CN2021131464
Numéro de publication 2022/257359
Statut Délivré - en vigueur
Date de dépôt 2021-11-18
Date de publication 2022-12-15
Propriétaire
  • ZHEJIANG FULAI NEW MATERIALS CO., LTD. (Chine)
  • ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Qi, Dongming
  • Yang, Xiaoming
  • Nie, Lei
  • Zhu, Chenkai
  • Li, Jiawei
  • Xia, Houjun
  • Yan, Xiaofei

Abrégé

The present invention relates to the field of glass fibers, and in particular to a mesoporous glass fiber and a preparation method therefor and graded porous fiber cotton and a preparation method therefor. The diameter of the glass fiber is 0.25 μm-5 μm, and the glass fiber has a mesoporous structure, and has good heat insulation and sound insulation effects. The graded porous fiber cotton comprises a resin adhesive and the mesoporous glass fiber. The glass fiber cotton is good in porosity, contains a mesoporous and microporous graded pore structure, and is low in heat conductivity coefficient and excellent in sound insulation and heat insulation performance, the lowest heat conductivity coefficient of the glass fiber cotton can reach 0.015W/(m·K), a fire resistance grade is A1 grade, and the highest loss of 2000 Hz of sound transmission can reach 2.1 dB.

Classes IPC  ?

  • C03B 37/04 - Fabrication de fibres ou de filaments de verre par emploi de la force centrifuge
  • C03B 37/022 - Fabrication de fibres ou de filaments de verre par étirage ou extrusion à partir de verre fondu dans lequel le produit résultant comporte différentes variétés de verre ou est caractérisé par la forme, p. ex. fibres creuses
  • C03C 25/002 - Traitement thermique
  • C03C 13/00 - Compositions pour fibres ou filaments de verre
  • C03C 25/66 - Traitement chimique, p. ex. lixiviation, traitement acide ou alcalin
  • D04H 3/004 - Fils ou filaments de verre
  • D04H 3/12 - Non-tissés formés uniquement ou principalement de fils ou de matériaux filamenteux similaires de bonne longueur caractérisés par la méthode de renforcement ou de consolidation avec filaments ou fils retenus ensemble par des agents de liage chimiques ou thermo-activables, p. ex. adhésifs, appliqués ou incorporés sous une forme liquide ou solide

30.

METHOD FOR PREDICTING, REGULATING AND CONTROLLING WEAR CHARACTERISTIC OF FLOW CHANNEL IN VALVE

      
Numéro d'application CN2021141434
Numéro de publication 2022/237185
Statut Délivré - en vigueur
Date de dépôt 2021-12-27
Date de publication 2022-11-17
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Jin, Haozhe
  • Ou, Guofu
  • Zhu, Zuchao
  • Wang, Chao

Abrégé

A method for predicting, regulating and controlling a wear characteristic of a flow channel in a valve. A multi-phase flow and regulating valve is arranged in a circulating pipeline loop. The method comprises: pasting an aluminum sheet in a valve core (13), and testing a wear rate; regulating inlet pressure, and obtaining distribution characteristics of a pressure field and a velocity field; establishing an association relationship between the wear rate and pressure and a flow velocity; increasing the inlet pressure, and drawing a discrete data curve and a continuous curve; obtaining a discrete data change curve and a continuous curve of the wear rate along with an opening degree of the valve core (13); obtaining an association relationship graph between the wear rate of the aluminum sheet and the inlet pressure and the opening degree of the valve core (13); changing a particle size and a particle concentration, and obtaining an association relationship graph between the wear rate of the aluminum sheet and the inlet pressure, the opening degree of the valve core (13), the particle size and the particle concentration; and performing comparison and determination on a real-time wear rate actual value of the aluminum sheet and a critical wear rate value, thereby avoiding the rapid wear and failure of the valve core (13). The method can be applied to flow wear state monitoring and dynamic regulation and control of a multi-stage depressurization string type liquid level regulating valve, and self-elimination of a flow wear critical characteristic of a high-pressure-difference liquid level regulating valve in a complicated service environment is realized.

Classes IPC  ?

31.

METHOD FOR IDENTIFYING AND ELIMINATING AMMONIUM SALT DEPOSITION CHARACTERISTICS IN PIPE BUNDLE OF HYDROGENATION AIR COOLER

      
Numéro d'application CN2022089355
Numéro de publication 2022/237531
Statut Délivré - en vigueur
Date de dépôt 2022-04-26
Date de publication 2022-11-17
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Jin, Haozhe
  • Ou, Guofu
  • Kuang, Jianping
  • Li, Xueyong
  • Zhu, Zuchao
  • Fu, Dexiao
  • Xiao, Shumeng

Abrégé

Disclosed in the present invention is a method for identifying and eliminating ammonium salt deposition characteristics in a pipe of a hydrogenation air cooler. A multiphase flow medium enters an inlet pipe box of a hydrogenation air cooler; an initial service state is calibrated, and an initial temperature calibration line and an equivalent temperature reference line are drawn to set a benchmark; cross sections and temperature transmitters are arranged on a pipe bundle of the air cooler at equal intervals in the axial direction; a temperature signal value is monitored and transmitted to a single-chip microcomputer for data analysis; an infrared thermal imager performs photographing, and transmits data such that same is processed to determine that an ammonium salt deposition risk is present under this working condition; a monitored temperature value is calculated, an ammonium salt deposition risk identification model is established, and an ammonium salt deposition risk on a temperature information monitoring section is then determined; and ammonium salt deposits are peeled off from the inner wall of the pipe bundle of the air cooler by means of vibration of the pipe bundle caused by the intermittent frequent switching-on/switching-off of an electromagnet and a magnetic block, and ultrasonic signals. In the present invention, the surface temperature field of a hydrogenation air cooler is monitored in real time, such that early identification, state monitoring and precise intelligent elimination of ammonium salt deposition characteristics in a pipe are realized.

Classes IPC  ?

  • F28F 19/00 - Prévention de la formation de dépôts ou de la corrosion, p. ex. en utilisant des filtres
  • F28G 7/00 - Nettoyage par vibration
  • G01J 5/00 - Pyrométrie des radiations, p. ex. thermométrie infrarouge ou optique

32.

CARBON FIBER MODIFICATION METHOD AND PRODUCT THEREOF

      
Numéro d'application CN2021092646
Numéro de publication 2022/217679
Statut Délivré - en vigueur
Date de dépôt 2021-05-10
Date de publication 2022-10-20
Propriétaire
  • ANHUI POLYTECHNIC UNIVERSITY (Chine)
  • ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Yang, Li
  • Xu, Zhenzhen
  • Ni, Qingqing
  • Chen, Yuan

Abrégé

The present invention relates to the technical field of modified carbon fibers, and in particular to a carbon fiber modification method and a product thereof. Carbon fibers are subjected to magnetron sputtering treatment and then subjected to heating treatment in an inert atmosphere, and modified carbon fibers are obtained, wherein the magnetron sputtering treatment takes the carbon fibers as a base material and carbon as a target material, and the sputtering conditions are: the vacuum degree is 2×10-3 Pa, the target-base distance is 4 cm, the magnetron sputtering power is 150-350 W, the magnetron sputtering pressure is 0.5-1.6 Pa, the magnetron sputtering time is 20-60 min, high-purity argon is taken as working gas, and an argon flow is 80 ml/min; and the heating treatment conditions are: the heating rate is 5°C/min, the heat treatment temperature is 200-600°C, and the heat treatment time is 25-40 min. For the carbon fibers which are modified according to the present invention, the tensile breaking strength can be increased by 4%-12%, the tensile breaking work can be increased by 15%-40%, and the mechanical performance of the carbon fibers can be effectively improved.

Classes IPC  ?

  • C23C 14/35 - Pulvérisation cathodique par application d'un champ magnétique, p. ex. pulvérisation au moyen d'un magnétron
  • C23C 14/06 - Revêtement par évaporation sous vide, pulvérisation cathodique ou implantation d'ions du matériau composant le revêtement caractérisé par le matériau de revêtement
  • D06M 11/74 - Traitement des fibres, fils, filés, tissus ou des articles fibreux faits de ces matières, avec des substances inorganiques ou leurs complexesUn tel traitement combiné avec un traitement mécanique, p. ex. mercerisage avec du carbone ou ses composés avec du carbone ou du graphiteTraitement des fibres, fils, filés, tissus ou des articles fibreux faits de ces matières, avec des substances inorganiques ou leurs complexesUn tel traitement combiné avec un traitement mécanique, p. ex. mercerisage avec du carbone ou ses composés avec des carburesTraitement des fibres, fils, filés, tissus ou des articles fibreux faits de ces matières, avec des substances inorganiques ou leurs complexesUn tel traitement combiné avec un traitement mécanique, p. ex. mercerisage avec du carbone ou ses composés avec des acides graphitiques ou leurs sels
  • D06M 101/40 - Fibres de carbone

33.

MODIFIED CHEMICAL FIBER FILLED WITH MULTI-ORIENTED GRAPHENE/POLYMER COMPOSITE AND PREPARATION METHOD THEREOF

      
Numéro d'application 17608139
Statut En instance
Date de dépôt 2020-10-28
Date de la première publication 2022-10-06
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Qi, Dongming
  • Wang, Jicheng
  • Huang, Huajun
  • Li, Jiawei
  • Sun, Yangyi

Abrégé

A graphene/polymer microsphere a modified chemical fiber filled with a multi-oriented graphene/polymer composite and a preparation method are disclosed. Graphene is coated by an in-situ suspension polymerization, which greatly improves the dispersion effect of graphene. Comonomers are used to increase the compatibility between graphene and polymers, so that a strong interaction between graphene and polymers is formed. The graphene/polymer microsphere with low melting point and high toughness is used to fill a chemical fiber, and is oriented therein to modify the chemical fiber. The graphene/polymer microspheres could be oriented to form a microfibril structure with a high aspect ratio in the chemical fiber.

Classes IPC  ?

  • D01F 6/52 - Filaments, ou similaires, faits par l’homme, à un seul composant, formés de polymères synthétiquesLeur fabrication à partir de mélanges de polymères obtenus par des réactions faisant intervenir uniquement des liaisons non saturées carbone-carbone comme constituant majeur avec d'autres polymères ou des composés de bas poids moléculaire de polymères d'acides carboxyliques non saturés ou de polymères d'esters non saturés
  • D01F 1/10 - Autres agents modifiant les propriétés de ces filaments
  • C08F 212/08 - Styrène
  • C08F 220/56 - AcrylamideMéthacrylamide
  • C08F 220/14 - Esters méthyliques

34.

VALVE OPENING AND CLOSING STRUCTURE AND VALVE

      
Numéro d'application CN2021084551
Numéro de publication 2022/205129
Statut Délivré - en vigueur
Date de dépôt 2021-03-31
Date de publication 2022-10-06
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Zhang, Guang
  • Wang, Weiwei
  • Lin, Zhe
  • Liu, Qi

Abrégé

A valve opening and closing structure and a valve. The valve opening and closing structure comprises: a rotating chuck (8), a plurality of valve flaps (5), and a limiting chuck (1). Both sides of each valve flap (5) are respectively provided with a sliding member (6) and a guide member (4); the rotating chuck (8) is provided with sliding grooves (7) in one-to-one correspondence to the sliding members (6); the sliding members (6) can slide along the sliding grooves (7); the limiting chuck (1) is provided with guide rails (2) in one-to-one correspondence to the guide members (4); the guide members (4) can slide and rotate along the guide rails (2); and the plurality of valve flaps (5) are enclosed to form a circle. The valve opening and closing structure is configured to drive, by means of the rotation of the rotating chuck (8), the plurality of valve flaps (5) to move along respective sliding grooves (7) and guide rails (2). The valve comprises a housing and the valve opening and closing structure; the rotating chuck (8) is movably supported in the housing; and the limiting chuck (1) is fixed to the housing.

Classes IPC  ?

  • F16K 3/03 - Robinets-vannes ou tiroirs, c.-à-d. dispositifs obturateurs dont l'élément de fermeture glisse le long d'un siège pour l'ouverture ou la fermeture à faces d'obturation planesGarnitures d'étanchéité à cet effet dont l'élément de fermeture est en forme de diaphragme iris
  • F16K 3/314 - Formes ou structures de la partie coulissanteSa fixation sur sa tige
  • F16K 27/04 - Structures des logementsMatériaux utilisés à cet effet des tiroirs
  • F16K 31/53 - Moyens mécaniques d'actionnement à engrenage

35.

Variable synthetic wavelength absolute distance measuring device locked to dynamic sideband and method thereof

      
Numéro d'application 17623611
Numéro de brevet 12007250
Statut Délivré - en vigueur
Date de dépôt 2020-08-07
Date de la première publication 2022-08-18
Date d'octroi 2024-06-11
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Yan, Liping
  • Xie, Jiandong
  • Chen, Benyong

Abrégé

A variable synthetic wavelength absolute distance measuring device locked to a dynamic sideband and a method thereof are disclosed. A high-frequency electro-optic phase modulator driven by an adjustable clock source to modulate a single-frequency reference laser to generate laser sidebands with equal frequency intervals. The tunable laser is locked to the fifth-order sideband through an offset frequency locking technology. After locking, the interval frequency of the sideband is determined by the adjustable clock source, namely dynamic sideband. The frequency of the adjustable clock source is dynamically adjusted, the interval frequency of the sideband and the frequency difference between the two lasers will change accordingly. Combined with the multi-wavelength interferometry, the constructed synthetic wavelength is also determined by the adjustable clock source, that is, the variable synthetic wavelength. The variable synthetic wavelength is dynamically adjusted, and the multi-level second-level synthetic wavelength is continuously constructed from large level to small level.

Classes IPC  ?

  • G01C 3/02 - Mesure des distances dans la ligne de viséeTélémètres optiques Détails
  • G01B 9/02001 - Interféromètres caractérisés par la commande ou la génération des propriétés intrinsèques du rayonnement
  • G01B 9/02004 - Interféromètres caractérisés par la commande ou la génération des propriétés intrinsèques du rayonnement utilisant plusieurs fréquences utilisant le balayage des fréquences
  • G01B 11/02 - Dispositions pour la mesure caractérisées par l'utilisation de techniques optiques pour mesurer la longueur, la largeur ou l'épaisseur
  • G02B 27/12 - Systèmes divisant ou combinant des faisceaux fonctionnant uniquement par réfraction
  • G02B 27/28 - Systèmes ou appareils optiques non prévus dans aucun des groupes , pour polariser
  • G02F 1/21 - Dispositifs ou dispositions pour la commande de l'intensité, de la couleur, de la phase, de la polarisation ou de la direction de la lumière arrivant d'une source lumineuse indépendante, p. ex. commutation, ouverture de porte ou modulationOptique non linéaire pour la commande de l'intensité, de la phase, de la polarisation ou de la couleur par interférence
  • H01S 5/0687 - Stabilisation de la fréquence du laser

36.

Method for preparing PET/PTT parallel complex filament with high self-crimpiness

      
Numéro d'application 17603578
Numéro de brevet 12000065
Statut Délivré - en vigueur
Date de dépôt 2020-08-25
Date de la première publication 2022-06-30
Date d'octroi 2024-06-04
Propriétaire
  • TONGKUN GROUP CO., LTD. (Chine)
  • ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Zhang, Xuzhen
  • Chen, Wenxing
  • Sun, Yanlin
  • Wang, Xiuhua
  • Liu, Shaobo
  • Lin, Xueyan
  • Xiao, Shunli

Abrégé

The present invention discloses a method for preparing a PET/PTT parallel complex filament with high self-crimpiness, wherein PET and PTT are sliced, dried and crystallized, and then fused separately and subjected to extrusion molding through a parallel-type spinneret plate; oil is applied after cooling; then level 1-3 drafting and heat setting treatment are adopted; and during drafting, a total drafting rate is controlled to be 3 to 3.5, wherein the level-1 drafting rate is 2.8 to 3.0 at a temperature controlled to be 75 to 80° C., according to the method for preparing the PET/PTT parallel complex filament with high self-crimpiness, methods like multi-level drafting for increasing the drafting rate are adopted, and the effects of improving the fiber strength, moderately lowering the breaking elongation, and greatly improving the self-crimpiness are achieved.

Classes IPC  ?

  • D01D 5/088 - Refroidissement des filaments, fils ou similaires, à la sortie des filières
  • B29B 13/06 - Conditionnement ou traitement physique de la matière à façonner par séchage
  • D01D 5/092 - Refroidissement des filaments, fils ou similaires, à la sortie des filières dans des cheminées
  • D01D 5/096 - Réglage de l'humidité, ou lubrification des filaments, fils ou similaires, à la sortie des filières
  • D01D 5/12 - Méthodes de filage par étirage
  • D01D 5/22 - Formation des filaments, fils ou similaires à structure crêpée ou onduléeFormation des filaments, fils ou similaires à structure imitant celle de la laine
  • D01D 5/32 - Structure "côte-à-côte"Ensembles de filage à cet effet
  • D01D 7/00 - Réception des produits nouvellement filés
  • D01D 10/02 - Traitement thermique
  • D01D 10/04 - Support des filaments ou similaires pendant leur traitement
  • D01D 10/06 - Lavage ou séchage
  • D01F 8/14 - Filaments, ou similaires, faits par l’homme, conjugués, c.-à-d. à plusieurs composantsLeur fabrication à partir de polymères synthétiques avec au moins un polyester comme constituant
  • D02G 1/00 - Production de fibres, filaments, filés ou fils, crêpés ou ondulés ou leur donnant de telles caractéristiques latentes
  • D02J 1/22 - Étirage ou tension, retrait ou relâchement, p. ex. par utilisation d'appareils sur ou sous-alimentés ou empêchant l'étirage
  • D02J 13/00 - Chauffage ou refroidissement de filaments, filés, fils câblés, cordes ou similaires ne correspondant spécifiquement à aucun des procédés prévus dans la présente sous-classe
  • B29B 9/16 - Traitement auxiliaire de granulés

37.

Weaving method of weft-backed jacquard fabric with color shading effect

      
Numéro d'application 17538619
Numéro de brevet 11668027
Statut Délivré - en vigueur
Date de dépôt 2021-11-30
Date de la première publication 2022-06-02
Date d'octroi 2023-06-06
Propriétaire Zhejiang Sci-Tech University (Chine)
Inventeur(s)
  • Zhou, Jiu
  • Peng, Xi

Abrégé

1−3)+2], and a grade number of shaded color is less than or equal to the maximum number of the shaded weaves. The designed fabric meets the covering requirements and can be mass produced.

Classes IPC  ?

  • D03D 13/00 - Tissus caractérisés par la disposition particulière des fils de chaîne ou de trame, p. ex. avec fils de trame incurvés, avec fils de chaîne discontinus, avec fils de chaîne ou de trame en diagonale
  • D03D 15/54 - Tissus caractérisés par la matière, la structure ou les propriétés des fibres, des filaments, des filés, des fils ou des autres éléments utilisés en chaîne ou en trame caractérisés par les propriétés des filés ou des fils colorés
  • D03C 19/00 - Méthodes ou dispositifs relatifs à la mise en carte ou à la création de dessins, non prévus dans les autres groupes de la présente sous-classe

38.

CONSTRAINED REDUNDANT PARALLEL MECHANISM WITH FOUR DEGREES OF FREEDOM INCLUDING TWO ROTATIONAL AND TWO TRANSLATIONAL DEGREES OF FREEDOM

      
Numéro d'application CN2021070772
Numéro de publication 2022/088508
Statut Délivré - en vigueur
Date de dépôt 2021-01-08
Date de publication 2022-05-05
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Chai, Xinxue
  • Xu, Lingmin
  • Li, Qinchuan

Abrégé

A constrained redundant parallel mechanism with four degrees of freedom including two rotational and two translational degrees of freedom, the parallel mechanism comprising a machine frame, a movable platform (1), and two first branches and two second branches which are connected in parallel between the machine frame and the movable platform, wherein each first branch comprises a first translational pair, a first spherical hinge (13), a first connecting rod (14) and a second spherical hinge (15), which are sequentially connected between the machine frame and the movable platform; each second branch comprises a second translational pair, a first rotational pair (23), a second connecting rod (24) and a first hooke joint (25), which are sequentially connected between the machine frame and the movable platform; and a first rotating shaft of the first hooke joint in the second branch is connected to the movable platform, and the axis of a second rotating shaft of the first hooke joint connected to the second connection rod is parallel to the axis of the first rotational pair and perpendicular to the translational axis of the second translational pair. The parallel mechanism has the advantages of a high precision/rigidity, a high operation speed, a good dynamic performance, and a high carrying capacity.

Classes IPC  ?

  • B25J 9/00 - Manipulateurs à commande programmée

39.

Method for synthesizing polymer/pigment hybrid latex through sulfur-free and soap-free in-situ reversible addition-fragmentation chain transfer (RAFT) emulsion copolymerization

      
Numéro d'application 17468718
Numéro de brevet 12122920
Statut Délivré - en vigueur
Date de dépôt 2021-09-08
Date de la première publication 2022-03-17
Date d'octroi 2024-10-22
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Qi, Dongming
  • Wang, Fenping
  • Li, Jiawei
  • Zhao, Lei
  • He, Guiping

Abrégé

A method for synthesizing a polymer/pigment hybrid latex through sulfur-free and soap-free in-situ reversible addition-fragmentation chain transfer (RAFT) emulsion copolymerization includes the following: dispersing a pigment with a reactive emulsifier to prepare a pigment dispersion; synthesizing an amphiphilic sulfur-free ω-vinyl-terminated polymethyl methacrylate (PMMA) macromolecular RAFT agent in-situ on a surface of pigment particles through catalytic chain transfer polymerization (CCTP); and adding an acrylate monomer dropwise, allowing in-situ sulfur-free RAFT polymerization on a surface of pigment particles through the RAFT agent, and adjusting a structure and a composition of an encapsulated polymer layer to obtain a series of uniformly encapsulated and stably dispersed polymer/organic pigment hybrid latexes. The new hybrid latex prepared through sulfur-free and soap-free in-situ RAFT emulsion copolymerization has the characteristics of high dispersion stability, high pigment encapsulation efficiency, clear encapsulated polymer layer sequence, controllable structure, etc., which is suitable for surface encapsulation modification of various pigments.

Classes IPC  ?

  • C08F 293/00 - Composés macromoléculaires obtenus par polymérisation sur une macromolécule contenant des groupes capables d'amorcer la formation de nouvelles chaînes polymères rattachées exclusivement à une ou aux deux extrémités de la macromolécule de départ
  • B01J 13/18 - Polymérisation in situ où tous les réactifs sont présents dans la même phase
  • C08F 2/44 - Polymérisation en présence d'additifs, p. ex. plastifiants, matières colorantes, charges
  • C09B 67/02 - Préparations tinctoriales caractérisées par un aspect physique particulier, p. ex. tablettes, feuilles
  • C09B 67/20 - Préparations à base de pigments organiques

40.

METHOD FOR SULPHUR-FREE SOAP-FREE IN-SITU RAFT EMULSION COPOLYMERISATION OF POLYMER/PIGMENT HYBRID LATEX

      
Numéro d'application CN2021113581
Numéro de publication 2022/052779
Statut Délivré - en vigueur
Date de dépôt 2021-08-19
Date de publication 2022-03-17
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Qi, Dongming
  • Wang, Fenping
  • Li, Jiawei
  • Zhao, Lei
  • He, Guiping

Abrégé

The present invention relates to a method for sulphur-free soap-free in-situ RAFT emulsion copolymerisation of polymer/pigment hybrid latex, comprising the following steps: selecting a reactive emulsifier to disperse a pigment to prepare a pigment dispersion; using a catalytic chain transfer polymerisation method to synthesise an amphiphilic sulphur-free terminal ω-vinyl methacrylate macromolecular RAFT reagent in situ on the surface of the pigment particles; dropwise adding an acrylate monomer, performing in-situ sulphur-free RAFT polymerisation on the surface of the pigment particles by means of the RAFT reagent, and adjusting the structure and the composition of the coating layer polymer to acquire a series of uniformly coated and stably dispersed polymer/organic pigment hybrid latexes. The hybrid latex prepared by means of the sulphur-free soap-free in-situ RAFT emulsion copolymerisation of the present invention has high dispersion stability, high pigment coating rate, clear coating polymer layer sequence, and a controllable structure, and is suitable for surface coating modification of various pigments.

Classes IPC  ?

  • C08F 2/22 - Polymérisation en émulsion
  • C08F 2/38 - Polymérisation utilisant des régulateurs, p. ex. des agents d'arrêt de chaîne
  • C08F 293/00 - Composés macromoléculaires obtenus par polymérisation sur une macromolécule contenant des groupes capables d'amorcer la formation de nouvelles chaînes polymères rattachées exclusivement à une ou aux deux extrémités de la macromolécule de départ

41.

GRAPHENE/POLYMER MULTI-ORIENTATION FILLING MODIFIED CHEMICAL FIBER AND PREPARATION METHOD THEREFOR

      
Numéro d'application CN2020124224
Numéro de publication 2022/047957
Statut Délivré - en vigueur
Date de dépôt 2020-10-28
Date de publication 2022-03-10
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Qi, Dongming
  • Wang, Jicheng
  • Huang, Huajun
  • Li, Jiawei
  • Sun, Yangyi

Abrégé

The present invention relates to the technical field of fiber modification, and provides a graphene/polymer multi-orientation filling modified chemical fiber and a preparation method therefor. In the present invention, graphene is coated by means of in-situ suspension polymerization, thereby greatly improving the dispersion effect of the graphene; the compatibility between the graphene and polymer microspheres is improved by utilizing a comonomer, thereby forming relatively strong interaction between the graphene and the polymer microspheres; the present invention employs a low-melting-point and high-toughness graphene/polymer microsphere oriented filling modified chemical fiber, strength and toughness of the chemical fiber can be increased simultaneously, and electrical and thermal conduction properties of a chemical fiber product are expected to be improved; oriented graphene/polymer microspheres can form a microfiber structure having a high length-to-diameter ratio in a single fiber, and the structure can inhibit formation of cracks in the radial direction (the main fracture direction of the fiber) on one hand, and can induce high orientation and crystallization of polymer molecules in a chemical fiber matrix on the other hand, so that the strength of a fiber material is increased.

Classes IPC  ?

  • D01F 6/52 - Filaments, ou similaires, faits par l’homme, à un seul composant, formés de polymères synthétiquesLeur fabrication à partir de mélanges de polymères obtenus par des réactions faisant intervenir uniquement des liaisons non saturées carbone-carbone comme constituant majeur avec d'autres polymères ou des composés de bas poids moléculaire de polymères d'acides carboxyliques non saturés ou de polymères d'esters non saturés
  • D01F 1/10 - Autres agents modifiant les propriétés de ces filaments
  • C08F 212/08 - Styrène
  • C08F 220/18 - Esters des alcools ou des phénols monohydriques des phénols ou des alcools contenant plusieurs atomes de carbone avec l'acide acrylique ou l'acide méthacrylique
  • C08F 220/14 - Esters méthyliques
  • C08F 222/20 - Esters contenant de l'oxygène en plus de l'oxygène de la fonction carboxyle
  • C08F 220/54 - Amides

42.

Electromagnetic regulating valve with check function

      
Numéro d'application 17142080
Numéro de brevet 11313486
Statut Délivré - en vigueur
Date de dépôt 2021-01-05
Date de la première publication 2022-02-17
Date d'octroi 2022-04-26
Propriétaire Zhejiang Sci-Tech University (Chine)
Inventeur(s)
  • Lin, Zhe
  • Wu, Zeyong
  • Chen, Desheng
  • Zhang, Guang
  • Zhu, Zuchao

Abrégé

The present disclosure discloses an electromagnetic regulating valve with a check function. The valve may effectively regulate the flow in a valve body. Due to different lengths and taper angles of a valve flap group, the flow can be regulated more finely, and a medium can be prevented from backflow by a check function when necessary. Meanwhile, a mesh structure of bases of valve flaps can effectively reduce the instability of flow field motion so as to achieve an effect of rectifying.

Classes IPC  ?

  • F16K 31/06 - Moyens de fonctionnementDispositifs de retour à la position de repos électriquesMoyens de fonctionnementDispositifs de retour à la position de repos magnétiques utilisant un aimant
  • F16K 15/06 - Soupapes, clapets ou valves de retenue à corps de soupapes rigides guidés par tige-guide
  • F16K 15/18 - Soupapes, clapets ou valves de retenue à mécanisme de commandeSoupape de retenue et soupape à mécanisme de commande combinées

43.

WATER INJECTION METHOD FOR PID CONTROL-BASED ADAPTIVE INTELLIGENT WATER INJECTION SYSTEM

      
Numéro d'application 17286825
Statut En instance
Date de dépôt 2020-04-20
Date de la première publication 2021-12-09
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Jin, Haozhe
  • Ou, Guofu
  • Fan, Zhichao
  • Gu, Yong
  • Wang, Qun
  • Wang, Chao

Abrégé

A water injection method for a PID control-based adaptive intelligent water injection system is provided. The system includes a water injection portion, a power portion, a control portion, and a measurement and transmission portion. The water injection portion includes a hydrogenation reactor, heat exchangers, air coolers, and a separation tank. The power portion includes a motor and a water pump. The control portion includes a console and a bus. Temperature, pressure and flow velocity transmitters are additionally arranged at each of inlet and outlet pipes of various heat exchangers, and water injection points are disposed. Temperature, pressure and flow velocity signals of the inlet and outlet pipes of heat exchange devices are monitored, and the console performs error analysis on the three signals and uses a PID control algorithm to control the adjustment valve to alter the valve opening degree to adjust the water injection amount in real time.

Classes IPC  ?

  • B01J 19/00 - Procédés chimiques, physiques ou physico-chimiques en généralAppareils appropriés
  • G06F 17/18 - Opérations mathématiques complexes pour l'évaluation de données statistiques
  • B01J 8/04 - Procédés chimiques ou physiques en général, conduits en présence de fluides et de particules solidesAppareillage pour de tels procédés avec des particules immobiles, p. ex. dans des lits fixes le fluide passant successivement à travers plusieurs lits

44.

DEVICE AND METHOD FOR MEASURING ABSOLUTE DISTANCE BY VARIABLE SYNTHETIC WAVELENGTH LOCKED TO DYNAMIC SIDEBAND

      
Numéro d'application CN2020107743
Numéro de publication 2021/227265
Statut Délivré - en vigueur
Date de dépôt 2020-08-07
Date de publication 2021-11-18
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Yan, Liping
  • Xie, Jiandong
  • Chen, Benyong

Abrégé

A device and method for measuring an absolute distance by a variable synthetic wavelength locked to a dynamic sideband. The measurement device comprises: a reference laser (1), a first optical fiber beam splitter (2), a high-frequency electro-optical phase modulator (3), an orthogonal optical fiber combiner (4), a high-frequency amplifier (10), an adjustable clock source (11), an atomic clock (12), an offset frequency detection and locking controller (13), a tunable laser (14), a second optical fiber splitter (15), an optical fiber combiner (16), and a sinusoidal phase-modulating interferometer. Said method comprises: using a high-frequency electro-optical phase modulator (3) driven by an adjustable clock source (11) to modulate a single-frequency reference laser, so as to generate a laser sideband having equal frequency intervals; locking a tunable laser (14) to a fifth-stage sideband by means of offset frequency locking technology, after locking, the spacing frequency of the sideband being determined by an adjustable clock source (11), i.e. a dynamic sideband; dynamically adjusting the frequency of the adjustable clock source (11), the spacing frequency of the sideband and the difference between frequencies of two lasers changing therewith, according to a multi-wavelength interference method, the constructed synthetic wavelength also being determined by the adjustable clock source (11), i.e. a variable synthetic wavelength; dynamically adjusting the variable synthetic wavelength, and continuously constructing multiple stages of second-order synthetic wavelengths in a descending order; and obtaining a distance to be measured according to a synthetic wavelength transition theory.

Classes IPC  ?

  • G01B 11/02 - Dispositions pour la mesure caractérisées par l'utilisation de techniques optiques pour mesurer la longueur, la largeur ou l'épaisseur
  • G01B 9/02 - Interféromètres

45.

Differential sinusoidal phase modulation laser interferometric nanometer displacement measuring apparatus and method

      
Numéro d'application 17256011
Numéro de brevet 11255655
Statut Délivré - en vigueur
Date de dépôt 2019-09-04
Date de la première publication 2021-07-01
Date d'octroi 2022-02-22
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Yan, Liping
  • Chen, Benyong
  • Lou, Yingtian
  • Xie, Jiandong

Abrégé

The disclosure discloses a differential sinusoidal phase modulation laser interferometric nanometer displacement measuring apparatus and method. The beam output from the single-frequency laser is converted into a 45° linearly polarized beam after passing through the polarizer, then projected onto two sets of sinusoidal phase modulation interferometers consisting of the beam splitter, the electro-optic phase modulator, the half wave plate, three pyramid prisms, two polarization beam splitters, thereby forming measurement and reference interference signals which are received by two photodetectors. A high-frequency sinusoidal voltage signal is applied to the electro-optic phase modulator placed in the common reference arm of the two interferometers, thereby modulating the interference signal into a high-frequency AC signal. By detecting the difference between the phase change amounts of the two interference signals when the measured object moves, the measured displacement can be obtained.

Classes IPC  ?

  • G01B 9/02 - Interféromètres
  • G01B 11/14 - Dispositions pour la mesure caractérisées par l'utilisation de techniques optiques pour mesurer la distance ou la marge entre des objets ou des ouvertures espacés

46.

BLADE LOAD DISTRIBUTION-BASED METHOD FOR DESIGNING CENTRIFUGAL-PUMP COMPOUND IMPELLER

      
Numéro d'application CN2020130308
Numéro de publication 2021/129261
Statut Délivré - en vigueur
Date de dépôt 2020-11-20
Date de publication 2021-07-01
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Zhu, Zuchao
  • Li, Xiaojun
  • Chen, Bo
  • Song, Baolin
  • Chen, Xiaowu

Abrégé

Provided is a blade load distribution-based method for designing a centrifugal-pump compound impeller: calculating an initial impeller to obtain the Euler head gradient coefficient, and determining whether long blades should be replaced by short blades for the impeller; while ensuring that the total load of the long and short blades is consistent, performing rear loading design for the long blades and performing front loading design for the short blades, such that the composite impeller can significantly improve the flow conditions inside the impeller. The invention improves the jet-wake phenomenon at the exit of the impeller, enhances the anti-cavitation performance of the centrifugal pump, and reduces the impact of pressure pulsation on the pump, making the flow more stable.

Classes IPC  ?

  • F04D 29/22 - Rotors spécialement pour les pompes centrifuges
  • F04D 29/24 - Aubes
  • F04D 29/66 - Lutte contre la cavitation, les tourbillons, le bruit, les vibrations ou phénomènes analoguesÉquilibrage

47.

Sample preparation mould and sample preparation method for triaxial test of municipal solid waste

      
Numéro d'application 17180857
Numéro de brevet 11733134
Statut Délivré - en vigueur
Date de dépôt 2021-02-21
Date de la première publication 2021-06-10
Date d'octroi 2023-08-22
Propriétaire Zhejiang Sci-Tech University (Chine)
Inventeur(s)
  • Zhang, Zhenying
  • Fan, Guoyang
  • Zhang, Jiayue
  • Zhang, Jiahe
  • Wang, Qiaona
  • Wang, Bang
  • Wang, Min

Abrégé

A sample preparation mould and a sample preparation method for the triaxial test of MSW are provided. In the present invention, the cylindrical main mould comprises two curved steel pieces, and the two sides of each curved steel piece have a stretched connection part; the two curved steel pieces are connected with each other and clamped by two steel clamps; porous stones are arranged at two ends of the cylindrical main mould and fixed separately by a top limiting lantern ring and a bottom lantern ring; the top limiting lantern ring is detachably connected to the top hopper, from which MSW materials are input; the cylindrical main mould is radially constrained in four positions, and the two ends thereof are axially constrained, thereby significantly improving stability during compacting and hence ensuring the axial and radial sizes of the MSW sample.

Classes IPC  ?

  • G01N 1/36 - Enrobage ou montage analogue d'échantillons
  • G01N 1/28 - Préparation d'échantillons pour l'analyse

48.

PREPARATION METHOD FOR HIGHLY SELF-CRIMPABLE PET/PTT SIDE-BY-SIDE COMPOSITE FILAMENT

      
Numéro d'application CN2020111105
Numéro de publication 2021/037028
Statut Délivré - en vigueur
Date de dépôt 2020-08-25
Date de publication 2021-03-04
Propriétaire
  • TONGKUN GROUP CO., LTD. (Chine)
  • ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Zhang, Xuzhen
  • Chen, Wenxing
  • Sun, Yanlin
  • Wang, Xiuhua
  • Liu, Shaobo
  • Lin, Xueyan
  • Xiao, Shunli

Abrégé

A preparation method for a highly self-crimpable PET/PTT side-by-side composite filament: after slicing, drying and crystallizing PET and PTT, melting each and forming by means of extruding out of side-by-side spinneret plates, cooling then applying oil, carrying out 1-3 stages of drafting and heat setting treatment, the total drafting ratio when drafting being controlled to be 3-3.5, a first stage drafting ratio being 2.8-3.0, and temperature being controlled to be 75-80°C. The present highly self-crimpable PET/PTT side-by-side composite filament preparation method uses methods such as multiple stages of drafting to improve a drafting ratio, achieving the results of increased fiber strength, moderately decreased elongation at break, and greatly improved self-crimping functionality.

Classes IPC  ?

  • D01D 5/32 - Structure "côte-à-côte"Ensembles de filage à cet effet
  • D01D 5/22 - Formation des filaments, fils ou similaires à structure crêpée ou onduléeFormation des filaments, fils ou similaires à structure imitant celle de la laine

49.

DIFFERENTIAL LASER INTERFEROMETRIC NANOMETER DISPLACEMENT MEASUREMENT APPARATUS AND METHOD EMPLOYING SINUSOIDAL PHASE MODULATION

      
Numéro d'application CN2019104314
Numéro de publication 2021/017098
Statut Délivré - en vigueur
Date de dépôt 2019-09-04
Date de publication 2021-02-04
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Yan, Liping
  • Chen, Benyong
  • Lou, Yingtian
  • Xie, Jiandong

Abrégé

A differential laser interferometric nanometer displacement measurement apparatus and method employing sinusoidal phase modulation. The method comprises: converting, by means of a polarizer (2), a light beam outputted by a single-frequency laser (1) into 45° linearly polarized light, directing the 45° linearly polarized light to two sinusoidal phase modulation interferometers respectively consisting of a beam splitter (3), an electro-optic phase modulator (5), a half-wave plate (4), three pyramidal prisms (6, 8, 9), and two polarizing beam splitters (7, 10) so as to form a measurement interference signal and a reference interference signal, and using two photoelectric detectors (11, 12) to receive the two signals; applying a high-frequency sinusoidal voltage signal to the electro-optic phase modulator (5) on a common reference arm of the two interferometers so as to modulate the interference signal into a high-frequency alternating-current signal; and measuring a difference between phase changes of the two interference signals existing when an object under measurement is moving, so as to acquire a measured displacement. Sinusoidal phase modulation improves the anti-interference performance of the interference signal, and a differential optical path is used to eliminate temperature drifts and environmental disturbance errors of the reference arm and part of measurement arms. The invention achieves sub-nanometer measurement accuracy, and is applicable to precision displacement measurement in the fields of high-end equipment manufacturing and precision test and measurement.

Classes IPC  ?

  • G01B 11/02 - Dispositions pour la mesure caractérisées par l'utilisation de techniques optiques pour mesurer la longueur, la largeur ou l'épaisseur
  • G01B 9/02 - Interféromètres

50.

Sinusoidal frequency sweeping interferometric absolute distance measurement apparatus and method with dynamic offset frequency locking

      
Numéro d'application 16968611
Numéro de brevet 11231268
Statut Délivré - en vigueur
Date de dépôt 2019-11-29
Date de la première publication 2021-01-28
Date d'octroi 2022-01-25
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Chen, Benyong
  • Xie, Jiandong
  • Yan, Liping

Abrégé

A reference laser beam locked to a femtosecond optical frequency comb is modulated through a high frequency electro-optic phase modulator, and laser sidebands with equal intervals are generated. Beat frequency is performed on the sixth-order sideband and the frequency sweeping laser beam, a beat signal and a frequency sweeping signal source are down-mixed to generate a difference frequency signal, and the difference frequency signal is locked to a reference clock through a digital phase detector and a PID controller. The frequency sweeping laser beam is locked to reference laser beam with a dynamic offset frequency under the closed loop control, and sinusoidal frequency sweeping is simultaneously performed together with the frequency sweeping signal source. The locked laser beam is used for absolute distance measurement, and a distance to be measured is obtained according to the synthetic wavelength transition theory.

Classes IPC  ?

51.

ABSOLUTE DISTANCE MEASUREMENT APPARATUS AND METHOD USING DYNAMIC FREQUENCY OFFSET LOCKING AND SINUSOIDAL FREQUENCY SCANNING INTERFEROMETRY

      
Numéro d'application CN2019122036
Numéro de publication 2020/244176
Statut Délivré - en vigueur
Date de dépôt 2019-11-29
Date de publication 2020-12-10
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Chen, Benyong
  • Xie, Jiandong
  • Yan, Liping

Abrégé

Disclosed are an absolute distance measurement apparatus and method using dynamic frequency offset locking and sinusoidal frequency scanning interferometry. The method comprises: a high-frequency electro-optic phase modulator modulating reference laser light locked to a femtosecond optical frequency comb and generating laser light sidebands at equal intervals; a sixth-order sideband and swept-frequency laser light performing frequency beating, a beat frequency signal and a signal output by a swept-frequency signal source undergoing down-mixing to generate a difference frequency signal, and locking the difference frequency signal to a reference clock by a digital phase discriminator and a PID controller; the swept-frequency laser light undergoing dynamic frequency offset locking to reference laser light under closed-loop control, and performing sinusoidal frequency scanning synchronously with the swept-frequency signal source; and the locked laser being used for absolute distance measurement to obtain an interference signal, solving a phase according to the characteristic of sinusoidal frequency scanning, and solving a distance to be measured according to a synthetic wavelength transition theory. By means of the present invention, the problems of it being difficult to accurately control the laser light frequency in a frequency scanning method, it being difficult to accurately measure the frequency scanning amount, etc., are solved, the absolute distance measurement accuracy and efficiency are improved, and the present invention can be widely applied to the technical field of interference measurement.

Classes IPC  ?

  • G01B 11/02 - Dispositions pour la mesure caractérisées par l'utilisation de techniques optiques pour mesurer la longueur, la largeur ou l'épaisseur
  • H01S 3/13 - Stabilisation de paramètres de sortie de laser, p. ex. fréquence ou amplitude
  • G01S 11/12 - Systèmes pour déterminer la distance ou la vitesse sans utiliser la réflexion ou la reradiation utilisant des ondes électromagnétiques autres que les ondes radio

52.

PID CONTROL-BASED ADAPTIVE SMART WATER INJECTION SYSTEM AND WATER INJECTION METHOD

      
Numéro d'application CN2020085686
Numéro de publication 2020/187338
Statut Délivré - en vigueur
Date de dépôt 2020-04-20
Date de publication 2020-09-24
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Jin, Haozhe
  • Ou, Guofu
  • Fan, Zhichao
  • Gu, Yong
  • Wang, Qun
  • Wang, Chao

Abrégé

Disclosed are a PID control-based adaptive smart water injection system and a water injection method. The system comprises a water injection portion, a power portion, a control portion, and a measurement and transmission portion. Temperature transmitters, pressure transmitters and flow transmitters are additionally arranged at inlet and outlet pipelines of various heat exchangers, and water injection points are set. Heat exchange device inlet/outlet pipeline temperature, pressure and flow signals are monitored, a control platform performs error analysis on the three signals, a PID control algorithm is used to control various adjustment valves to alter the valve opening degrees, and the water injection amount is adjusted in real time, thereby solving the defect of lag in traditional intermittent water injection, and achieving the goal of alleviating the problem of ammonium salt corrosion failure in petrochemical hydrogenation apparatuses, in addition to conforming with the concepts of energy conservation and environmental protection. The present invention is suitable for hydrogenation apparatuses in fields such as petrochemical engineering, has simple processes and strong applicability, and can be applied to hydrogenation processes having different numbers of heat exchange devices.

Classes IPC  ?

  • F28F 19/00 - Prévention de la formation de dépôts ou de la corrosion, p. ex. en utilisant des filtres
  • G05B 11/42 - Commandes automatiques électriques avec les dispositions nécessaires pour obtenir des caractéristiques particulières, p. ex. proportionnelles, intégrales, différentielles pour obtenir une caractéristique à la fois proportionnelle et dépendante du temps, p. ex. P.I., P.I.D.

53.

Phase delay extraction and compensation method in PGC phase demodulation technology

      
Numéro d'application 16868550
Numéro de brevet 11168975
Statut Délivré - en vigueur
Date de dépôt 2020-05-07
Date de la première publication 2020-08-20
Date d'octroi 2021-11-09
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Chen, Benyong
  • Xie, Jiandong
  • Yan, Liping

Abrégé

The disclosure discloses a phase delay extraction and compensation method in a PGC phase demodulation technology. The sinusoidal phase modulation interference signal is converted into a digital interference signal by an analog-to-digital converter after amplification and filtering, and the digital interference signal is subjected to orthogonal downmixing of first-order, second-order, and fourth-order harmonics simultaneously to obtain three pairs of orthogonal harmonic amplitude signals. The three pairs of orthogonal harmonic amplitude signals are used to extract phase delay, and the result is used to calculate the corresponding phase delay correction coefficients, and the phase delay correction coefficient are multiplied by the corresponding absolute harmonic amplitude signal equal to the sum of the absolute value of the orthogonal harmonic amplitude signals to obtain a new harmonic amplitude signal that is not affected by the phase delay, then the phase to be measured is obtained through the arc tangent operation.

Classes IPC  ?

54.

PHASE DELAY EXTRACTION AND COMPENSATION METHOD IN PGC PHASE DEMODULATION METHOD

      
Numéro d'application CN2019070333
Numéro de publication 2020/098132
Statut Délivré - en vigueur
Date de dépôt 2019-01-04
Date de publication 2020-05-22
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Chen, Benyong
  • Xie, Jiandong
  • Yan, Liping

Abrégé

Disclosed in the present invention is a phase delay extraction and compensation method in a PGC phase demodulation method, comprising: converting, by means of an analog-to-digital converter, an amplified and filtered sinusoidal phase modulation interference signal into a digital interference signal, simultaneously performing quadrature downmixing of first-order, second-order and fourth-order harmonics on the digital interference signal, so as to obtain three pairs of quadrature harmonic amplitude signals, using the three pairs of quadrature harmonic amplitude signals to extract a phase delay amount, using the phase delay amount to calculate a corresponding phase delay correction coefficient, multiplying the phase delay correction coefficient by a corresponding absolute harmonic amplitude signal equal to the sum of the absolute values of the quadrature harmonic amplitude signals, obtaining a new harmonic amplitude signal which is not affected by the phase delay, and then obtaining, by means of an arc tangent operation, a phase to be measured. The present invention solves the problems in the PGC phase demodulation technology of the difficulty in accurately measuring the phase delay and the difficulty in performing real-time compensation on the non-linear error caused by the phase delay, improving the phase measurement accuracy; and is widely used in the technical field of sinusoidal modulation interference.

Classes IPC  ?

  • G01D 5/26 - Moyens mécaniques pour le transfert de la grandeur de sortie d'un organe sensibleMoyens pour convertir la grandeur de sortie d'un organe sensible en une autre variable, lorsque la forme ou la nature de l'organe sensible n'imposent pas un moyen de conversion déterminéTransducteurs non spécialement adaptés à une variable particulière utilisant des moyens optiques, c.-à-d. utilisant de la lumière infrarouge, visible ou ultraviolette
  • G01B 9/02 - Interféromètres

55.

Layered electro-magnetic refreshable braille display device and braille reader

      
Numéro d'application 16610912
Numéro de brevet 11410574
Statut Délivré - en vigueur
Date de dépôt 2014-11-12
Date de la première publication 2020-05-21
Date d'octroi 2022-08-09
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Yang, Wenzhen
  • Xu, Yan
  • Wu, Xinli
  • Zhu, Panfei

Abrégé

The present invention discloses a layered electro-magnetic refreshable braille display device and braille reader. The layered electro-magnetic refreshable braille display device includes three layers of braille display modules and a touch panel. Each braille display module includes 5 plates and a plurality of tactile pin driving mechanisms for driving the “up” and “down” of the braille dots. One or more lines of braille cells are arranged on the touch panel. Each line of braille cells displays a plurality of braille characters. A microprocessor is connected to a braille translation module, a voice playing module and an interaction controller respectively, wherein the interaction controller is connected to the braille display device, to form the braille reader. This device can display one or more lines of braille characters by relying on the electro-magnetic principle. It boasts real-time refreshing of the braille, synchronization of braille display and voice playing.

Classes IPC  ?

  • G09B 21/00 - Moyens d'enseignement ou de communication destinés aux aveugles, sourds ou muets
  • G06F 3/041 - Numériseurs, p. ex. pour des écrans ou des pavés tactiles, caractérisés par les moyens de transduction
  • G09F 9/37 - Dispositifs d'affichage d'information variable, dans lesquels l'information est formée sur un support, par sélection ou combinaison d'éléments individuels dans lesquels le ou les caractères désirés sont formés par une combinaison d'éléments individuels à éléments mobiles

56.

ELECTROMAGNETICALLY-DRIVEN BRAILLE DISPLAY DEVICE WITH LOW ENERGY CONSUMPTION

      
Numéro d'application CN2018114258
Numéro de publication 2020/077703
Statut Délivré - en vigueur
Date de dépôt 2018-11-07
Date de publication 2020-04-23
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Wu, Yuecheng
  • Yang, Wenzhen
  • Hu, Xuxiao
  • Cao, Xingjiang

Abrégé

Disclosed is an electromagnetically-driven Braille display device with low energy consumption, comprising a base, a main body, actuation rods, ejector pins and actuators, wherein the main body is mounted on the base, the main body is at least provided with ejector pin mounting holes with the same number as that of Braille contacts in a "cell", the actuation rods with the same number as that of each column of ejector pins are arranged below the column of ejector pins, and the bottom of each ejector pin is always in contact with the actuation rod; and the main body is further provided with actuation rod mounting holes, each actuation rod mounting hole is respectively in communication with the corresponding ejector pin mounting hole, each actuation rod is driven by an actuator, and each actuation rod uniquely controls the lifting movement of an ejector pin corresponding to the actuation rod. The present invention provides an electromagnetic-driven Braille display device with low energy consumption, wherein same is suitable for the generation of Braille characters in all languages and in all forms.

Classes IPC  ?

  • G09B 21/00 - Moyens d'enseignement ou de communication destinés aux aveugles, sourds ou muets

57.

Real-time normalization apparatus and method of phase generated carrier demodulation in sinusoidal phase modulation interferometer

      
Numéro d'application 16348147
Numéro de brevet 10641600
Statut Délivré - en vigueur
Date de dépôt 2018-08-29
Date de la première publication 2019-12-05
Date d'octroi 2020-05-05
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Yan, Liping
  • Zhang, Shihua
  • Chen, Benyong

Abrégé

The present invention discloses a real-time normalization apparatus and method of the PGC demodulation in a sinusoidal phase modulation interferometer. An optical setup containing a measuring interferometer and a monitoring interferometer is constructed. An electro-optic phase modulator is placed in the common reference arm of the two interferometers. High-frequency sinusoidal wave modulation and low-frequency triangular wave modulation are applied to the electro-optic phase modulator at the same time. Sinusoidal modulation is used for generating phase carrier, and PGC demodulation is performed to obtain quadrature signals containing the phase information to be measured. Triangular wave modulation makes the quadrature signals change periodically. Ellipse fitting is performed on the Lissajous figure corresponding to the quadrature signals, and real-time normalization of the PGC demodulated quadrature signals is achieved. By calculating the variation of the phase difference between the two interference signals, the measured displacement is obtained, and nanometer scale displacement measurement is achieved.

Classes IPC  ?

  • G01B 9/02 - Interféromètres
  • G01D 5/353 - Moyens mécaniques pour le transfert de la grandeur de sortie d'un organe sensibleMoyens pour convertir la grandeur de sortie d'un organe sensible en une autre variable, lorsque la forme ou la nature de l'organe sensible n'imposent pas un moyen de conversion déterminéTransducteurs non spécialement adaptés à une variable particulière utilisant des moyens optiques, c.-à-d. utilisant de la lumière infrarouge, visible ou ultraviolette avec atténuation ou obturation complète ou partielle des rayons lumineux les rayons lumineux étant détectés par des cellules photo-électriques en modifiant les caractéristiques de transmission d'une fibre optique
  • H04L 27/233 - Circuits de démodulationCircuits récepteurs utilisant une démodulation non cohérente

58.

REAL-TIME NORMALIZATION MODIFICATION APPARATUS AND METHOD FOR PGC DEMODULATION IN SINE PHASE MODULATION INTERFEROMETER

      
Numéro d'application CN2018103381
Numéro de publication 2019/062466
Statut Délivré - en vigueur
Date de dépôt 2018-08-31
Date de publication 2019-04-04
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Yan, Liping
  • Zhang, Shihua
  • Chen, Benyong

Abrégé

A real-time normalization modification apparatus for PGC demodulation in a sine phase modulation interferometer, containing an optical path structure for measuring an interferometer and monitoring the interferometer; an electro-optic phase modulator is placed in a common reference arm of the two interferometers, and high-frequency sinusoidal wave modulation and low-frequency triangular wave modulation are applied at the same time; the sinusoidal wave modulation is used for generating a phase carrier, and PGC demodulation is performed to obtain an orthogonal signal containing information about a phase to be measured; the triangular wave modulation enables the orthogonal signal to periodically change, and ellipse fitting is performed on a Lissajous figure corresponding to the orthogonal signal, so as to realize the real-time normalized modification of the PGC demodulated orthogonal signal; and a measured displacement is obtained by calculating a phase difference variation of two interference signals, realizing nanoscale displacement measurement. Also provided is displacement detection method based on real-time normalization processing of PGC demodulation in a sine phase modulation interferometer. Non-linear errors caused by changes in a phase modulation depth, a phase delay, a multiplier, a filter gain, etc. in PGC demodulation are eliminated, and there is a sub-nanoscale measurement precision, which is applicable for precise displacement measurement in the field of high-end equipment manufacturing and machining.

Classes IPC  ?

59.

CONTINUOUS WEFT INSERTING AND BORDER LOCKSTITCHING DEVICE BASED ON THREE-DIMENSIONAL ANNULAR KNITTING MACHINE AND WEFT INSERTION METHOD THEREFOR

      
Numéro d'application CN2018095045
Numéro de publication 2019/011218
Statut Délivré - en vigueur
Date de dépôt 2018-07-09
Date de publication 2019-01-17
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Wu, Zhenyu
  • Zhang, Lichan
  • Wang, Maolin
  • Ying, Zhiping

Abrégé

Disclosed are a continuous weft inserting and border lockstitching device based on a three-dimensional annular knitting machine and a weft insertion method therefor. In the weft insertion method, a stepping motor (1) is connected to a left border lockstitching air cylinder (2) and drives the rotation thereof; the left border lockstitching air cylinder (2) is mounted on a left border lockstitching air cylinder fixing member (14); a left border lockstitching laser distance measurement device (10) monitors the stroke of a piston rod of the left border lockstitching air cylinder (2); a right border lockstitching air cylinder (5) is mounted on a right border lockstitching air cylinder fixing member (15); a right border lockstitching laser distance measurement device (11) monitors the stroke of a piston rod of the right border lockstitching air cylinder (5); a weft insertion rapier air cylinder (3) and a rapier (4) are respectively mounted on a rapier and an air cylinder fixing member (17); a rapier laser distance measurement device (9) monitors the stroke of the rapier (4); a beating-up heald frame (18) is fixed on a rack (19); a right border pressing air cylinder (6) is mounted on a right border pressing fixing member (16) and is connected to a U-shaped presser (7); the U-shaped presser (7) presses against a cloth fell (8); the cloth fell (8) is located on the rack (19); and a left border pressing laser distance measurement device (12) monitors the stroke of the cloth fell (8). A weft locking device fixes an outer weft of a warp layer, thus preventing a weft motion caused by the reciprocating motion of the rapier and increasing the success rate of weft insertion.

Classes IPC  ?

  • D03D 47/40 - Formation des lisières
  • D03D 47/12 - Métiers dans lesquels la bobine de trame ne traverse pas la foule, p. ex. métiers sans navette, métiers à pinces, métiers avec fausse navette dans lesquels de simples duites de fil de trame sont insérées, c.-à-d. avec formation du pas entre chaque duite

60.

Two rotational and one translational degrees of freedom parallel manipulator with high rotational capability

      
Numéro d'application 15741430
Numéro de brevet 10539211
Statut Délivré - en vigueur
Date de dépôt 2017-03-23
Date de la première publication 2018-12-27
Date d'octroi 2020-01-21
Propriétaire Zhejiang Sci-Tech University (Chine)
Inventeur(s)
  • Xu, Lingmin
  • Li, Qinchuan
  • Ye, Wei

Abrégé

Disclosed is a two-turn-one-movement parallel mechanism with a large turning angle, comprising a machine frame, a movable platform, a first branch and two second branches, characterized in that the first branch comprises a machine frame turning pair, a first moving pair slider, a first moving pair guide rod and a first universal joint; each one of the second branches comprises a second moving pair guide rail, a second moving pair slider, a second universal joint, a connecting rod and a movable platform turning pair; in the two second branches, the axis of the first turning pair of each one of the second universal joints is superimposed with and parallel to the axis of the machine frame turning pair in the first branch, and the axis of each one of the movable platform turning pairs is parallel to the second turning axis of the first universal joint in the first branch.

Classes IPC  ?

  • B25J 17/00 - Joints
  • B25J 17/02 - Joints articulés
  • B25J 18/00 - Bras
  • F16H 21/54 - Transmissions ne comportant essentiellement que des tringles ou des leviers, avec ou sans glissières avec mouvements dans les trois dimensions pour convertir un mouvement oscillant en mouvement alternatif et vice versa ou pour transmettre ces mouvements
  • B25J 9/00 - Manipulateurs à commande programmée

61.

Dual-homodyne laser interferometric nanometer displacement measuring apparatus and method based on phase modulation

      
Numéro d'application 15554217
Numéro de brevet 10151573
Statut Délivré - en vigueur
Date de dépôt 2016-07-22
Date de la première publication 2018-11-15
Date d'octroi 2018-12-11
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Yan, Liping
  • Chen, Benyong

Abrégé

The present invention discloses a dual-homodyne laser interferometric nanometer displacement measuring apparatus and method based on phase modulation. The linearly polarized beam with single wavelength emitted from a single frequency laser is projected onto a dual-homodyne laser interferometer consisting of four beam splitters and two retroreflectors to respectively form a measurement interference signal and a reference interference signal received by two photodetectors, respectively; an electro-optic phase modulator is placed in the optical path and a periodic sawtooth-wave voltage signal is applied to modulate the measurement and reference DC interference signals into AC interference signals; the measured displacement is obtained by detecting the variation of the phase difference between the two interference signals caused by the movement of the measured object. The present invention overcomes the error arising from DC drift in the homodyne laser interferometer and avoids the sinusoidal error caused by the direct subdivision of the interference signal or non-quadrature error of measurement interference signal. The present invention is applicable for the precision displacement measurement with sub-nanometer level accuracy in the fields of high-end equipment manufacturing and processing.

Classes IPC  ?

62.

LARGE-ROTATION ANGLE TWO-ROTATIONAL, ONE-TRANSLATIONAL PARALLEL MECHANISM

      
Numéro d'application CN2017077780
Numéro de publication 2018/076601
Statut Délivré - en vigueur
Date de dépôt 2017-03-23
Date de publication 2018-05-03
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Xu, Lingmin
  • Li, Qinchuan
  • Ye, Wei

Abrégé

A large-rotation angle two-rotational and one-translational parallel mechanism, comprising a chassis, a mobile platform (1), one first branch and two second branches; the first branch comprises a chassis rotating pair, a first translational pair sliding block (13), a first translational pair guide rod (14) and a first Hooke's joint (15); a second branch comprises a second translational pair guide rail (21), a second translational pair sliding block (22) a second Hooke's joint (23), a connecting rod (24) and a mobile platform rotational pair (25); in the two second branches, first rotational pair axes of the second Hooke's joints coincide, and are also parallel to an axis of the chassis rotational pair of the first branch; in the two second branches, axes of the movable platform rotational pairs are parallel to a second rotational axis of the first Hooke's joint (15) of the first branch. The present parallel mechanism has the advantages of a large degree of rotation, simple structure, high stiffness, large carrying capacity, and good kinetic performance.

Classes IPC  ?

  • B25J 9/00 - Manipulateurs à commande programmée
  • B25J 1/02 - Manipulateurs mus dans l'espace manuellement articulés ou flexibles

63.

Method of air refractive index correction for absolute long distance measurement

      
Numéro d'application 15537432
Numéro de brevet 10024647
Statut Délivré - en vigueur
Date de dépôt 2016-05-17
Date de la première publication 2018-02-15
Date d'octroi 2018-07-17
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Chen, Benyong
  • Zhang, Shihua
  • Yan, Liping

Abrégé

A method of air refractive index correction for an absolute long distance measurement adopting a two-color method based on a single wavelength and a synthetic wavelength is provided. Two lasers emit two laser beams with a constant single wavelength and a variable wavelength, respectively, to form a synthetic wavelength chain from large to small through a laser interferometric system. Each order of the synthetic wavelength chain is used to obtain a series of the estimate values of optical distance with gradually increasing accuracy. After optical distances corresponding to a minimum synthetic wavelength and a single wavelength are obtained simultaneously, the corrected absolute distance is achieved according to the principle of the two-color method for air refractive index correction. The method can realize full-path correction of air refractive index along the actual path of the distance measurement, and has low requirements on the measurement precision of environmental parameters such as temperature and pressure.

Classes IPC  ?

64.

PHASE MODULATION-BASED DUAL-LASER SINGLE-FREQUENCY INTERFEROMETRIC NANOMETER DISPLACEMENT MEASUREMENT DEVICE AND METHOD

      
Numéro d'application CN2016090963
Numéro de publication 2018/014325
Statut Délivré - en vigueur
Date de dépôt 2016-07-22
Date de publication 2018-01-25
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Yan, Liping
  • Chen, Benyong

Abrégé

A phase modulation-based dual-laser single-frequency interferometric nanometer displacement measurement device, comprising: a single frequency laser (1), first to fourth beam splitters (2, 3, 4, 5), an electro-optic phase modulator (6), a high voltage amplifier (7), a signal generator (8), a reference corner cube prism (9), a measurement corner cube prism (10), and first and second photodetectors (11, 12). The single frequency laser (1) outputs single-wavelength linearly polarized light to a reference laser single-frequency interferometer composed of the first to fourth beam splitters (2, 3, 4, 5) and the reference corner cube prism (9) and a measurement laser single-frequency interferometer composed of the second beam splitter (3), the reference corner cube prism (9), and the measurement corner cube prism (10), to respectively form a reference interference signal and a measurement interference signal that are received by the first and second photodetectors (11, 12). The electro-optic phase modulator (6) is disposed between the second beam splitter (3) and the reference corner cube prism (9) and is used to modulate a DC interference signal into an AC interference signal. A displacement of a measured object is obtained according to a variation of a phase difference of the two interference signals. A displacement measurement method using the displacement measurement device is further provided. The device and method prevent a DC drift error generated by a single frequency interferometer and a sinusoidal error or non-orthogonal error caused by directly subdividing a measurement interference signal.

Classes IPC  ?

65.

METHOD FOR CORRECTING AIR REFRACTIVE INDEX IN LARGE-RANGE ABSOLUTE DISTANCE MEASUREMENT

      
Numéro d'application CN2016082279
Numéro de publication 2017/133128
Statut Délivré - en vigueur
Date de dépôt 2016-05-17
Date de publication 2017-08-10
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Chen, Benyong
  • Zhang, Shihua
  • Yan, Liping

Abrégé

A method for correcting an air refractive index in large-range absolute distance (D) measurement. Self-correction of the air refractive index in the absolute distance (D) measurement is implemented by using a two-color method based on a single wavelength (λ1) of a laser and a synthetic wavelength. Two laser devices (1, 2) respectively output a laser beam having a fixed wavelength and a laser beam having an adjustable wavelength; a chain of synthetic wavelengths (λS1, …, λSi, …, λSn) from large to small is constructed by a laser interference system (II); each stage of synthetic wavelength meets an inter-stage transition condition, and a minimum synthetic wavelength (λSn) can transition to a single wavelength (λ1); to-be-measured absolute distances (D) are respectively measured to obtain optical distance estimated values (LS1, …, LSi, …, LSn) of which the precision is gradually improved; optical distances (LSn, L1) corresponding to the minimum synthetic wavelength (λSn) and the single wavelength (λ1) are simultaneously obtained; a corrected absolute distance (D) is obtained according to a two-color method air refractive index correction principle. The present method is applicable to large-range distance measurement and high-precision distance correction, relates to full-path correction of an air refractive index along an actual measurement optical path, and is easily implemented due to low measurement precision requirements for environmental parameters, such as temperature and pressure.

Classes IPC  ?

66.

Poly (cyclic butylene terephthalate) / silicon dioxide nanocomposite

      
Numéro d'application 14979423
Numéro de brevet 09631069
Statut Délivré - en vigueur
Date de dépôt 2015-12-27
Date de la première publication 2017-04-25
Date d'octroi 2017-04-25
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Ni, Qingqing
  • Xia, Hong
  • Fu, Yaqin

Abrégé

The present invention relates to the technical field of polymer composites, in particular to a poly (cyclic butylene terephthalate)/silicon dioxide nanocomposite, wherein the added silicon dioxide is catalyst-modified nanosilicon dioxide.

Classes IPC  ?

  • B01J 23/14 - Catalyseurs contenant des métaux, oxydes ou hydroxydes métalliques non prévus dans le groupe du germanium, de l'étain ou du plomb
  • B01J 21/08 - Silice
  • C08L 67/02 - Polyesters dérivés des acides dicarboxyliques et des composés dihydroxylés
  • C08K 9/04 - Ingrédients traités par des substances organiques
  • C08G 63/127 - Acides contenant des cycles aromatiques
  • C08G 63/85 - Germanium, étain, plomb, arsenic, antimoine, bismuth, titane, zirconium, hafnium, vanadium, niobium, tantale ou leurs composés
  • C08K 3/36 - Silice
  • C08G 63/183 - Acides téréphtaliques
  • C08K 9/06 - Ingrédients traités par des substances organiques par des composés contenant du silicium
  • B01J 27/135 - HalogènesLeurs composés avec du titane, du zirconium, de l'hafnium, du germanium, de l'étain ou du plomb

67.

Absolute distance measurement apparatus and method using laser interferometric wavelength leverage

      
Numéro d'application 15304062
Numéro de brevet 09835441
Statut Délivré - en vigueur
Date de dépôt 2015-03-27
Date de la première publication 2017-02-09
Date d'octroi 2017-12-05
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Chen, Benyong
  • Yan, Liping
  • Zhang, Shihua

Abrégé

2. The orthogonally linearly polarized beam projects onto the wavelength-leverage laser interferometric system to form the interference beam. The interference beam projects onto the interference signal processing and controlling system. In the wavelength-leverage laser interferometric system, the synthetic wavelength and the single wavelength as well as the measured absolute distance and the moving displacement of the cube-corner prism in the reference arm form a wavelength-leverage absolute distance measurement relationship.

Classes IPC  ?

  • G01B 11/14 - Dispositions pour la mesure caractérisées par l'utilisation de techniques optiques pour mesurer la distance ou la marge entre des objets ou des ouvertures espacés
  • G01B 9/02 - Interféromètres
  • G01B 11/00 - Dispositions pour la mesure caractérisées par l'utilisation de techniques optiques

68.

Laser heterodyne interferometric straightness measurement apparatus and method with six DOFs determination

      
Numéro d'application 15112193
Numéro de brevet 09863753
Statut Délivré - en vigueur
Date de dépôt 2015-02-06
Date de la première publication 2016-12-22
Date d'octroi 2018-01-09
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Chen, Benyong
  • Yan, Liping
  • Zhang, Enzheng
  • Xu, Bin

Abrégé

A laser heterodyne interferometric straightness measurement apparatus and method with six DOFs determination includes a part for determining the straightness and its position based on laser heterodyne interferometry and a part for error determination and compensation. The optical path for determination of four DOFs errors including three common beam-splitters, a polarizing beam-splitter, a planar mirror, a convex lens, a position-sensitive detector and two quadrant detectors is added in the optical configuration of the part for determining the straightness and its position based on laser heterodyne interferometry.

Classes IPC  ?

  • G01B 9/02 - Interféromètres
  • G01B 11/00 - Dispositions pour la mesure caractérisées par l'utilisation de techniques optiques

69.

LASER INTERFERENCE WAVELENGTH LEVER-TYPE ABSOLUTE DISTANCE MEASUREMENT APPARATUS AND METHOD

      
Numéro d'application CN2015075187
Numéro de publication 2016/154780
Statut Délivré - en vigueur
Date de dépôt 2015-03-27
Date de publication 2016-10-06
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Chen, Benyong
  • Yan, Liping
  • Zhang, Shihua

Abrégé

A laser interference wavelength lever-type absolute distance measurement apparatus, comprising a light source system (I), a wavelength lever-type laser interference system (II) and an interference signal processing and control system (III). The light source system (I) outputs orthogonal linear polarized beams of which the wavelengths are respectively λ1 and λ2, and emits same to the wavelength lever-type laser interference system (II) to form interference beams which are emitted to the interference signal processing and control system (III). In the wavelength lever-type laser interference system (II), a wavelength lever-type absolute distance measurement relationship is formed between a synthetic wavelength and a single wavelength and between a measured absolute distance and the motion displacement of a cube-corner prism (22) of a reference arm. The interference signal processing and control system (III) is responsible for detecting a phase difference between two single wavelength interference signals, calculating the measured absolute distance and controlling the change in the wavelength λ2 in the light source system (I). The apparatus can realize the measurement of any absolute distance, can realize the transition from the synthetic wavelength to the single wavelength, and is suitable for large-scale/large-sized and high-precision absolute distance measurement in the fields of large precise equipment manufacturing, spatial engineering, a measurement technique and the like. Also provided is a laser interference wavelength lever-type absolute distance measurement method.

Classes IPC  ?

  • G01B 11/00 - Dispositions pour la mesure caractérisées par l'utilisation de techniques optiques
  • G01B 9/02 - Interféromètres

70.

Device for biaxially-oriented stretching polytetrafluoroethylene hollow fiber membranes and method thereof

      
Numéro d'application 14785526
Numéro de brevet 10293537
Statut Délivré - en vigueur
Date de dépôt 2014-09-01
Date de la première publication 2016-09-08
Date d'octroi 2019-05-21
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Guo, Yuhai
  • Zhu, Hailin
  • Wang, Feng
  • Zhang, Huapeng

Abrégé

The present disclosure discloses a device for biaxially-oriented stretching polytetrafluoroethylene hollow fiber membranes and the method thereof. The device may include a lubricant removing oven and a tube blank heating oven mounted at the outlet end of the push-compression mold, a core extension extending from the core into the lubricant removing oven and the tube blank heating oven, and a speed regulating guide wheel mounted at the outlet of the tube blank heating oven. A tube blank is extruded from a push-compression machine, inserted on the core extension for removal of lubricant in the lubricant removing oven, heated in the tube blank heating oven, transversely stretched by means of the bulked core, and then wound onto the speed regulating guide wheel for longitudinal stretching. Both transverse and longitudinal stretching can be realized for polytetrafluoroethylene tube blanks, overcoming disadvantages of traditional processing devices that can merely perform longitudinal stretching.

Classes IPC  ?

  • B29C 55/26 - Étirage biaxial
  • B29C 47/00 - Moulage par extrusion, c. à d. en exprimant la matière à mouler dans une matrice ou une filière qui lui donne la forme désirée; Appareils à cet effet (moulage par extrusion-soufflage B29C 49/04)
  • B01D 69/08 - Membranes à fibres creuses
  • B01D 71/36 - Polytétrafluoro-éthylène
  • B29C 47/92 - Mesure, commande ou régulation
  • B01D 67/00 - Procédés spécialement adaptés à la fabrication de membranes semi-perméables destinées aux procédés ou aux appareils de séparation
  • B29C 47/94 - Lubrification
  • B29K 27/18 - PTFE, c.-à-d. polytétrafluoro-éthylène
  • B29L 22/00 - Objets creux

71.

LASER HETERODYNE INTERFERENCE LINEARITY MEASURING APPARATUS AND METHOD HAVING SIX-DEGREES-OF-FREEDOM DETECTION

      
Numéro d'application CN2015072460
Numéro de publication 2016/123812
Statut Délivré - en vigueur
Date de dépôt 2015-02-06
Date de publication 2016-08-11
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Chen, Benyong
  • Yan, Liping
  • Zhang, Enzheng
  • Xu, Bing

Abrégé

A laser heterodyne interference linearity measuring apparatus and method having six-degrees-of-freedom detection. The laser heterodyne interference linearity measuring apparatus comprises a laser heterodyne interference linearity and position detection portion and an error detection and compensation portion; in a light path structure of the laser heterodyne interference linearity and position detection portion, a four-degrees-of-freedom error detection light path consisting of three ordinary beam splitters (2, 5, 13), a polarization beam splitter (14), a plane reflector (10), a convex lens (4), a position sensitive detector (3) and two four-quadrant detectors (15, 16) is added; by utilizing a method combining laser heterodyne interferometry and a laser spot detection method, six-degrees-of-freedom simultaneous detection on a swing angle, a pitch angle, a roll angle, horizontal linearity, vertical linearity and linearity positions of a detected object is realized, and error compensation is performed on the vertical linearity and a vertical linearity position, so that the influence of a rotating error of the detected object on a measurement result during the linearity measuring process is eliminated, and the measurement precision on the laser heterodyne interference linearity and positions thereof is improved.

Classes IPC  ?

  • G01B 11/00 - Dispositions pour la mesure caractérisées par l'utilisation de techniques optiques

72.

LAYERED ELECTROMAGNETIC BRAILLE DISPLAY DEVICE AND BRAILLE READING MACHINE

      
Numéro d'application CN2014090908
Numéro de publication 2016/074170
Statut Délivré - en vigueur
Date de dépôt 2014-11-12
Date de publication 2016-05-19
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Yang, Wenzhen
  • Xu, Yan
  • Wu, Xinli
  • Zhu, Panfei

Abrégé

A layered electromagnetic Braille display device and a Braille reading machine. The Braille display device comprises three layers of Braille display modules (8, 9, 10) and a touch pad (17). Each layer of Braille display modules (8, 9, 10) comprises five plates and multiple contact driving mechanisms for driving Braille contacts (7) to rise and reset. The touch pad (17) is provided with one or multiple rows of Braille units, and each row of Braille units comprises multiple Braille units displaying Braille characters. A microprocessor is connected to a Braille translation and conversion module, a voice play module and a contact controller, and the contact controller is connected to the Braille display device to form the Braille reading machine. The Braille display device can display one or multiple rows of Braille characters by using the working principle of electromagnetic induction, and is exquisite in structural design, low in cost, stable in performance and high in reliability; and the Braille can be updated in real time, the Braille display is synchronized with voice play, and the reading and study requirements of the blind can be satisfied.

Classes IPC  ?

  • G09B 21/00 - Moyens d'enseignement ou de communication destinés aux aveugles, sourds ou muets

73.

ENVIRONMENT-FRIENDLY SUCROSE POLYESTER EMULSION USED AS FABRIC SOFTENER AND PREPARATION METHOD THEREFOR

      
Numéro d'application CN2015078858
Numéro de publication 2016/065888
Statut Délivré - en vigueur
Date de dépôt 2015-05-13
Date de publication 2016-05-06
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Wang, Jiping
  • Zhang, Lingling
  • Liu, Jinqiang
  • Duan, Pengzhen
  • Zhang, Junyi
  • Zhang, Aiping
  • Yang, Yunfei

Abrégé

An environment-friendly sucrose polyester emulsion used as a fabric softener and a preparation method therefor. The prepared sucrose polyester emulsion has uniform granularity, low viscosity and good stability; requires no coemulsifier or thickener, so the cost is saved and the application is simple and convenient; has a simple process and requires a few devices and a small amount of labor work; and can be stably stored and transported for a long term and is suitable for industrial production.

Classes IPC  ?

  • A61K 8/85 - Polyesters
  • C08J 3/03 - Production de solutions, dispersions, latex ou gel par d'autres procédés que ceux utilisant les techniques de polymérisation en solution, en émulsion ou en suspension dans un milieux aqueux
  • C08L 67/00 - Compositions contenant des polyesters obtenus par des réactions créant une liaison ester carboxylique dans la chaîne principaleCompositions contenant des dérivés de tels polymères
  • A61Q 19/00 - Préparations pour les soins de la peau

74.

BIDIRECTIONALLY-STRETCHING APPARATUS AND METHOD FOR POLYTETRAFLUOROETHYLENE HOLLOW FIBER MEMBRANE

      
Numéro d'application CN2014085682
Numéro de publication 2016/033726
Statut Délivré - en vigueur
Date de dépôt 2014-09-01
Date de publication 2016-03-10
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Guo, Yuhai
  • Zhu, Hailin
  • Wang, Feng
  • Zhang, Huapeng

Abrégé

Provided are a bidirectionally-stretching apparatus and method for a polytetrafluoroethylene hollow fiber membrane. The apparatus comprises a mandrel extension section extending from a mandrel. The mandrel extension section extends into a degreasing oven and a tube blank heating-up oven. The diameter of the mandrel extension section in the tube blank heating-up oven is expanded to form an expanded mandrel. By means of the apparatus and the method, a polytetrafluoroethylene tube blank can be bidirectionally stretched, thereby improving the porosity of the polytetrafluoroethylene hollow fiber membrane.

Classes IPC  ?

75.

METHOD FOR PROCESSING POLYTETRAFLUOROETHYLENE FILAMENT WITH CIRCULAR CROSS-SECTION USING CUTTING AND HOT-MELT FORMING PROCESS

      
Numéro d'application CN2014071498
Numéro de publication 2015/109572
Statut Délivré - en vigueur
Date de dépôt 2014-01-26
Date de publication 2015-07-30
Propriétaire
  • ZHEJIANG KERTICE HI-TECH FLUOR-MATERIAL CO., LTD. (Chine)
  • ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Guo, Yuhai
  • Xu, Zhiliang
  • Luo, Wenchun
  • Wang, Feng
  • Zhu, Hailin
  • Tang, Hongyan
  • Jiang, Xueliang
  • Chen, Meiyu
  • Zhang, Huapeng
  • Lai, Kan

Abrégé

Disclosed is a method for processing a polytetrafluoroethylene filament with a circular cross-section using a cutting and hot-melt forming process. The filament is made by mixing polytetrafluoroethylene dispersive resin powder with a liquid lubricant, and subjecting same to the processes of material mixing, green compacting, calendering, longitudinal stretching, cutting, hot-melt forming etc. The method disclosed in the present invention is simple and has a low cost. The polytetrafluoroethylene filament prepared therefrom has a quasi-circular cross-section shape and a strength of 4.3 - 3.2 cN/dtex, which can substantially decrease the damage of a needle or a spunlace to the filament during the process. The filament can be widely used for treating a high-temperature tail gas in industries of waste incineration plants, coal-fired power plants, cements etc., and has notable economic and social benefits.

Classes IPC  ?

  • D01F 6/48 - Filaments, ou similaires, faits par l’homme, à un seul composant, formés de polymères synthétiquesLeur fabrication à partir de mélanges de polymères obtenus par des réactions faisant intervenir uniquement des liaisons non saturées carbone-carbone comme constituant majeur avec d'autres polymères ou des composés de bas poids moléculaire de polymères d'hydrocarbures halogénés
  • D01F 1/10 - Autres agents modifiant les propriétés de ces filaments
  • D01D 5/42 - Formation des filaments, fils ou similaires par coupage de feuilles en rubans étroits ou en filaments, ou par fibrillation de feuilles
  • D01D 10/02 - Traitement thermique

76.

FEEDBACK APPARATUS FOR FINGERTIP FORCE

      
Numéro d'application CN2013089656
Numéro de publication 2015/089729
Statut Délivré - en vigueur
Date de dépôt 2013-12-17
Date de publication 2015-06-25
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Yang, Wenzhen
  • Bao, Jiangfeng
  • Li, Xiaotao
  • Wu, Xinli

Abrégé

A feedback apparatus for fingertip force, comprising a positioning assembly for a fingertip force bearing face, a feedback assembly for fingertip normal pressure, a feedback assembly (14) for fingertip sliding friction force and a feedback assembly (31) for fingertip torque. The positioning assembly for the fingertip force bearing face realizes the positioning of the fingertip force bearing face through the side swaying of an external framework (15); the feedback assembly for the fingertip normal pressure realizes feedback of the fingertip positive pressure through unfolding and folding of the external framework (15); the feedback assembly (14) for the fingertip sliding friction force drives the sliding of a rotary seat (27) via levers (18, 19) and a spring (16) so as to realize feedback of the fingertip sliding friction force; and the feedback assembly for the fingertip torque drives the rotation of the rotary seat (27) via a micro servo electric motor (26) and gears (29, 30) so as to realize feedback of the fingertip torque. The feedback apparatus for the fingertip force has a compact structure, and can realize feedback of normal pressure, friction force and torque of force bearing faces of a fingertip at different positions.

Classes IPC  ?

  • G06F 3/01 - Dispositions d'entrée ou dispositions d'entrée et de sortie combinées pour l'interaction entre l'utilisateur et le calculateur

77.

Laser heterodyne interferometric signal processing method based on locking edge with high frequency digital signal

      
Numéro d'application 14520985
Numéro de brevet 09797705
Statut Délivré - en vigueur
Date de dépôt 2014-10-22
Date de la première publication 2015-02-12
Date d'octroi 2017-10-24
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Chen, Benyong
  • Zhang, Enzheng
  • Yan, Liping

Abrégé

The present invention discloses a processing method for laser heterodyne interferometric signal based on locking edge with high frequency digital signal. A reference signal and a measurement signal of heterodyne interferometer, after being processed by photodetector, signal amplifier, filtering circuit, voltage comparator and high frequency digital edge locking module, are transferred to pulse counting synchronized latching processing module, to obtain entire cycle interference fringe numbers and filling pulse numbers in one interference fringe cycle, of the reference signal and the measurement signal; the numbers are transferred to a computer to obtain displacement and speed of a measured object; usage of a high frequency digital pulse signal to lock the rising edge of laser heterodyne interferometric signal can improve the gradient of the rising edge of interference signal and eliminate wrong pulse caused by noises, and improve the accuracy and stability of the processing for the following signals.

Classes IPC  ?

  • G01B 9/02 - Interféromètres
  • G01B 11/14 - Dispositions pour la mesure caractérisées par l'utilisation de techniques optiques pour mesurer la distance ou la marge entre des objets ou des ouvertures espacés
  • G01P 3/36 - Dispositifs caractérisés par l'emploi de moyens optiques, p. ex. en utilisant la lumière infrarouge, visible ou ultraviolette

78.

MELT CONDENSATION POLYMERIZATION REACTOR

      
Numéro d'application CN2013082375
Numéro de publication 2014/201768
Statut Délivré - en vigueur
Date de dépôt 2013-08-27
Date de publication 2014-12-24
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s) Chen, Wenxing

Abrégé

A melt condensation polymerization reactor comprising an upright housing (7) tube-external falling film component (16) arranged within the upright housing (7), a heat transfer system, a film distributing apparatus, a sealing head (1) connected to the upper end of the housing (7), an upper evacuation port (19), and a bottom housing (14) connected to the lower end of the upright housing (7). The sealing head (1) is provided at the top part thereof with a material inlet (26). The bottom housing (14) is provided at the bottom part thereof with a material outlet (13). The bottom housing (14) has arranged therein a stirrer (27). The melt condensation polymerization reactor employs a reaction scheme that combines a tube-external falling film reaction and a stirring reaction and has a high condensation polymerization efficiency and even reaction temperature.

Classes IPC  ?

  • B01J 19/24 - Réacteurs fixes sans élément interne mobile
  • C08G 63/78 - Procédés de préparation

79.

MELT CONDENSATION POLYMERIZATION REACTION METHOD, REACTOR FOR SAME, AND FALLING FILM TUBE THEREOF

      
Numéro d'application CN2013082365
Numéro de publication 2014/201767
Statut Délivré - en vigueur
Date de dépôt 2013-08-27
Date de publication 2014-12-24
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s) Chen, Wenxing

Abrégé

Disclosed is a melt condensation polymerization reaction method. A molten monomer blend or a prepolymer flows along the outer walls of U-shaped tubes to engage in a condensation polymerization reaction. A heat transfer medium circulates within the U-shaped tubes. Melts on the U-shaped tubes converge to the lower part of a condensation polymerization reactor to further engage in a stirring reaction and homogenization by mixing. A material is discharged upon completion of the reaction. The condensation polymerization reactor implementing the present method comprises an upright housing, an upper end sealing head, a lower end bottom housing, U-shaped tubes, a heat transfer system, a film distributing apparatus, and a helical ribbon mixer. The present reactor has the advantages of a simplified structure, full heat exchange, large film-forming area, even reaction temperature, high condensation polymerization efficiency, and plug flow-satisfying process, and can be used for melt condensation polymerization reactions of polyethylene terephthalate, polytrimethylene terephthalate, polybutylene terephthalate, polyethylene naphthalate, polyamide, and polycarbonate.

Classes IPC  ?

  • C08G 63/78 - Procédés de préparation
  • B01J 19/24 - Réacteurs fixes sans élément interne mobile
  • B01J 19/32 - Éléments de remplissage en forme de grille ou d'éléments composés de plusieurs pièces pour constituer une unité ou un module dans l'appareil de transfert de chaleur ou de matière

80.

INCLINED INWARDLY-TRANSPLANTING WIDE-NARROW ROW TRANSPLANTING MECHANISM AND FULL-AUTOMATIC BOWL TURNING SUB-SEEDLING TRANSPLANTING MECHANISM

      
Numéro d'application CN2014073074
Numéro de publication 2014/146545
Statut Délivré - en vigueur
Date de dépôt 2014-03-07
Date de publication 2014-09-25
Propriétaire
  • NORTHEAST AGRICULTURAL UNIVERSITY (Chine)
  • ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Zhao, Yun
  • Sun, Liang
  • Zhou, Maile
  • Xin, Liang

Abrégé

An inclined inwardly-transplanting wide-narrow row transplanting mechanism comprises a power transmission case (1), a left transplanting mechanism (7) and a right transplanting mechanism (3). A left power output shaft (8) and a right power output shaft (6) are assembled on the left side and the right side of the power transmission case (1), the shaft axes of the left power output shaft (8) and the right power output shaft (6) are configured to be inclined downwards and symmetrical with respect to a horizontal plane. A driven bevel gear (4) engaged with a driving bevel gear (2) on a main driving shaft (10) in the power transmission case (1) is assembled on the left or right power output shaft (8, 6). A left bevel gear (9) and a right bevel gear (5) are respectively assembled on the left power output shaft (8) and the right power output shaft (6) and engaged with each other, and the transmission ratio is 1:1. The left transplanting mechanism (7) and the right transplanting mechanism (3) are vertically mounted and meshed with the left and right power output shaft (8, 6). The left transplanting mechanism (7) and the right transplanting mechanism (3) as a whole is the inwardly inclined symmetrical structure which takes a shape of an inverse "八", and the symmetrical structure is wide at the seedling-taking part and is narrow at the seedling-transplanting part. The mechanism can achieve the inward-offset transplanting operation after taking seedling via the left transplanting mechanism and the right transplanting mechanism. The mechanism solves the technical problem of damming mud, damming water and pushing over the seedlings.

Classes IPC  ?

  • A01C 11/02 - Machines transplanteuses [repiqueuses] pour plants

81.

METHOD FOR PROCESSING LASER HETERODYNE INTERFERENCE SIGNAL BASED ON HIGH-FREQUENCY DIGITAL SIGNAL EDGE LOCKING

      
Numéro d'application CN2013070894
Numéro de publication 2014/107924
Statut Délivré - en vigueur
Date de dépôt 2013-01-23
Date de publication 2014-07-17
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Chen, Benyong
  • Zhang, Enzheng
  • Yan, Liping

Abrégé

A method for processing a laser heterodyne interference signal based on high-frequency digital signal edge locking, comprising: sending a reference signal and a measurement signal of a laser heterodyne interferometer into a pulse counting synchronous latch processing module (6) to obtain the full-period interference fringe number and the filling pulse number within one interference fringe period of the reference signal and the measurement signal after processing the signals by respective photoelectric detectors (1, 8), signal amplifiers (2, 9), filter circuits (3, 10), voltage comparators (4, 11) and high-frequency digital edge locking modules (5, 12), and sending the full-period interference fringe number and the filling pulse number within an interference fringe period of the reference signal and the measurement signal to a computer through a serial port communication module (14) to obtain the displacement and the speed of an object under detection. A high-frequency digital pulse signal is used for locking the rising edge of a laser heterodyne interference signal, so that the steepness of the rising edge of the interference signal can be improved, error pulses caused by noise interference can be eliminated, a signal period will not be changed, the phase delay of the rising edge of the signal is eliminated, and the accuracy and the stability of subsequent signal processing are improved.

Classes IPC  ?

  • G01B 9/02 - Interféromètres
  • G01J 9/02 - Mesure du déphasage des rayons lumineuxRecherche du degré de cohérenceMesure de la longueur d'onde des rayons lumineux par des méthodes interférométriques

82.

COMBINED-TYPE POT-GROWN RICE SEEDLING TRANSPLANTING MECHANISM

      
Numéro d'application CN2013073118
Numéro de publication 2014/036825
Statut Délivré - en vigueur
Date de dépôt 2013-03-25
Date de publication 2014-03-13
Propriétaire
  • NORTHEAST AGRICULTURAL UNIVERSITY (Chine)
  • ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Zhao, Yun
  • Chen, Jianneng
  • Wu, Chuanyu
  • Sun, Liang
  • Zhao, Xiong

Abrégé

Provided is a conjugated cam and planetary gear train combined-type pot-grown rice seedling transplanting mechanism. The mechanism comprises a uniform/non-uniform speed driving planetary gear train mechanism (1-1), a conjugated cam swinging mechanism (1-2) and a transplanting arm (1-3). Power drives, through a central shaft (1-4) of the planetary gear train mechanism (1-1), the planetary gear train mechanism (1-1) to rotate. The planetary gear train mechanism (1-1) provides power for the conjugated cam swinging mechanism (1-2) while pulling the transplanting arm (1-3) to move. The conjugated cam swinging mechanism enables a transplanting arm shell (1-15) to rotate relative to a planetary gear (1-8), so that movement of the transplanting arm (1-3) becomes a composition of pulling movement of the planetary gear train mechanism (1-1) and relative rotation, and a sharp point of a seedling clamping piece on the transplanting arm (1-3) forms a movement trajectory in a woodpecker manner. Further provided is a high-speed pot-grown seedling transplanting mechanism of a free second-order noncircular gear planetary system. As driven by the free second-order noncircular gear planetary system, a first seedling claw (2-8) and a second seedling claw (2-8') take two unequal amplitude swings in a cycle, forming a track in a shape of a Chinese character "卜", which has a beak on the right. The transplanting mechanism has the characteristics of strong adaptability, simple structure, low cost, small vibration and high efficiency.

Classes IPC  ?

  • A01C 11/02 - Machines transplanteuses [repiqueuses] pour plants
  • F16H 37/12 - Transmissions comportant principalement une transmission à engrenages ou à friction, des maillons ou des leviers, des cames, ou bien des organes appartenant à deux des trois types ci-dessus au moins

83.

ENVIRONMENT-FRIENDLY PASTE DISCHARGE AGENT FOR TEXTILE PRINTING AND PREPARATION METHOD THEREOF

      
Numéro d'application CN2012086254
Numéro de publication 2013/174124
Statut Délivré - en vigueur
Date de dépôt 2012-12-10
Date de publication 2013-11-28
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Shao, Jianzhong
  • Zhou, Lan
  • Chen, Yani
  • Qi, Dongming
  • Liu, Jinqiang

Abrégé

Disclosed are an environment-friendly paste discharge agent for textile printing and a preparation method thereof. The environment-friendly paste discharge agent comprises the following components in parts by weight: 30-60 parts of decamethyl cyclopentasiloxane, 40-70 parts of thiourea dioxide, 1-3 parts of surfactant, and 3-6 parts of glycerin, and is prepared as follows: putting decamethyl cyclopentasiloxane into a ball grinder container; adding the surfactant to be evenly dispersed or dissolved and stirring the surfactant evenly; and then adding the thiourea dioxide into the ball grinder container to blend and grind for 1-3 hours. Specific liquid compound decamethyl cyclopentasiloxane, which is used as a dispersion medium in the present invention, is not subjected to a chemical reaction with the thiourea dioxide; the thiourea dioxide is isolated from the external water and air; the stability of the thiourea dioxide is improved; the discharge effect is excellent; and the problems of low solubility, poor dispersible uniformity in discharge pulp, poor net permeability and insufficient development of the discharge effect when the common thiourea dioxide is used as the discharge agent are solved. In addition, the feel of pigment printed discharging fabric is not affected at all.

Classes IPC  ?

84.

Method and apparatus for measuring the refractive index of air based on the laser synthetic wavelength interferometry

      
Numéro d'application 13379986
Numéro de brevet 08665452
Statut Délivré - en vigueur
Date de dépôt 2011-05-18
Date de la première publication 2013-10-03
Date d'octroi 2014-03-04
Propriétaire Zhejiang Sci-Tech University (Chine)
Inventeur(s)
  • Yan, Liping
  • Chen, Benyong
  • Tian, Qiuhong
  • Sun, Zhengrong

Abrégé

−9 or higher, and has strong anti-disturbance ability to the environment.

Classes IPC  ?

  • G01N 21/41 - RéfringencePropriétés liées à la phase, p. ex. longueur du chemin optique
  • G01N 21/43 - RéfringencePropriétés liées à la phase, p. ex. longueur du chemin optique en mesurant l'angle critique

85.

HIGH-PERFORMANCE RECHARGEABLE BATTERY

      
Numéro d'application CN2012076367
Numéro de publication 2013/010409
Statut Délivré - en vigueur
Date de dépôt 2012-06-01
Date de publication 2013-01-24
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s) Shi, Pingping

Abrégé

A high-performance rechargeable battery is formed of an anode, a cathode, an insulating film between the two, and an electrolyte containing anions and cations and having ion conductivity. The cathode adopts an active material dominated by the element zinc. The active material adopted for the anode is manganese dioxide electrode material capable of absorption and release of zinc ions. The electrolyte is an aqueous solution system containing zinc ions and a surfactant. The present invention adopts the modification effect of a surfactant, so that the capacity and life cycle of a battery are enhanced.

Classes IPC  ?

  • H01M 10/36 - Accumulateurs non prévus dans les groupes
  • H01M 4/50 - Emploi de substances spécifiées comme matériaux actifs, masses actives, liquides actifs d'oxydes ou d'hydroxydes inorganiques de manganèse
  • H01M 4/38 - Emploi de substances spécifiées comme matériaux actifs, masses actives, liquides actifs d'éléments simples ou d'alliages

86.

METHOD AND DEVICE FOR MEASURING AIR REFRACTIVE INDEX BASED ON LASER SYNTHETIC WAVELENGTH INTERFERENCE

      
Numéro d'application CN2011074248
Numéro de publication 2012/062096
Statut Délivré - en vigueur
Date de dépôt 2011-05-18
Date de publication 2012-05-18
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Yan, Liping
  • Chen, Benyong
  • Tian, Qiuhong
  • Sun, Zhengrong

Abrégé

A method and a device for measuring air refractive index based on laser synthetic wavelength interference are disclosed. The laser synthetic wavelength interferometer is composed of a double frequency laser, a spectroscope, two polarization spectroscopes and two pyramid prisms. The quartz vacuum cavity is located in the measuring optical paths and is parallel with the direction of ray propagation. During the measurement, the air is conveyed to the quartz vacuum cavity until equaling the outside environment. Then, the change of the air refractive index in the cavity can cause the change of the interference signal of the wavelength λ2. The integral change number N of interference fringes of the wavelength λ2 is directly detected by photoelectric detector. Then, the pyramid prisms of the interferometer is moved, so as to make the phase difference of the interferential signal of wavelength λ1 and λ2 equal to the original phase difference before conveying the air to the quartz vacuum cavity. Based on the subdivisional principle of the laser synthetic wavelength interference fringes, the decimal fraction ε of change part of interference fringes of the wavelength λ2 is detected. Air refractive index n is computed according to the length L of vacuum cavity, the integer N of interference fringes and the decimal fraction ε. The invention has the measurement accuracy of over 10-9 and strong environment interference resisting capability.

Classes IPC  ?

  • G01N 21/45 - RéfringencePropriétés liées à la phase, p. ex. longueur du chemin optique en utilisant des méthodes interférométriquesRéfringencePropriétés liées à la phase, p. ex. longueur du chemin optique en utilisant les méthodes de Schlieren
  • G01N 21/41 - RéfringencePropriétés liées à la phase, p. ex. longueur du chemin optique

87.

SEPARATING-TRANSPLANTING MECHANISM OF WIDE-NARROW ROW TRANSPLANTER

      
Numéro d'application CN2011072525
Numéro de publication 2011/124145
Statut Délivré - en vigueur
Date de dépôt 2011-04-08
Date de publication 2011-10-13
Propriétaire
  • NORTHEAST AGRICULTURAL UNIVERSITY (Chine)
  • ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Zhao, Yun
  • Sun, Liang
  • Yu, Gaohong

Abrégé

The invention provides a separating-transplanting mechanism of a wide-narrow transplanter. An output shaft of a transmission case in the transplanter forms an inclination angle with the center axis of the sun gear in a planetary transmission gear system of the separating-transplanting mechanism. The output shaft of the transmission case is arranged to form an inclination angle with the input shaft of the separating-transplanting mechanism by setting a transmission of universal-joint, a pair of helical gears, combination of helical gear and spur gear, or helical internal gears between the axis of the sun gear in the separating-transplanting mechanism and a chain wheel shaft in the transmission case. Therefore the rotating working plane of a planet carrier which is mounted on the input shaft forms an inclination angle with the output shaft. Planting arms driven by the planet gears and seedling needles mounted on the planting arms move in a plane inclined relative to the output shaft. The lateral movement relative to an advancing direction produced by the inclination of the planet carrier enables seedling buried points to move leftwards or rightwards relative to seedling taking positions after the seedling needles take seedlings, and then transplanting positions form a distribution of wide and narrow rows at unequal row spaces meeting agronomic requirements on the premise that seedling taking openings are distributed at equal intervals. PCT/CN2011/072525201107030002872C18ExamineCreate

Classes IPC  ?

  • A01C 11/02 - Machines transplanteuses [repiqueuses] pour plants

88.

A SEQUENTIAL POT SEEDLING TRANSPLANTER

      
Numéro d'application CN2007002513
Numéro de publication 2008/049307
Statut Délivré - en vigueur
Date de dépôt 2007-08-20
Date de publication 2008-05-02
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Zhao, Yun
  • Chen, Jianneng
  • Zhang, Guofeng
  • Xu, Yicheng
  • Li, Jianqiao
  • Yu, Yaxin

Abrégé

A sequential pot seedling transplanter which comprises a conveyer belt(16), a conveyer drum(18), a seedling bowl feed plat(19), a rolling cage, a bowl pressing(20), and also comprises a seedling lifting mechanism, a transmission mechanism, a bowl recovering and a seedling bowl auto-separating mechanism. The transmission mechanism and the seedling lifting mechanism eject rice seedlings that are fed to seedling bowls(30) by the rolling cage, and push the seedlings to field via guide tube; the bowl recovering mechanism recovers the seedling bowl(30); the seedling bowl auto-separating mechanism which is under the rolling cage makes connected agraffe on the seedling bowl open and the bowls drop into reclaiming box on frame.

Classes IPC  ?

  • A01C 11/02 - Machines transplanteuses [repiqueuses] pour plants

89.

A ROTARY TRANSPLANTING MECHANISM OF WALKING SEEDLING TRANSPLANTER

      
Numéro d'application CN2007002512
Numéro de publication 2008/049306
Statut Délivré - en vigueur
Date de dépôt 2007-08-20
Date de publication 2008-05-02
Propriétaire ZHEJIANG SCI-TECH UNIVERSITY (Chine)
Inventeur(s)
  • Zhao, Yun
  • Yu, Gaohong
  • Wu, Chuanyu
  • Sun, Liang
  • Zhao, Xiong
  • Li, Ge

Abrégé

A rotary transplanting mechanism of walking seedling transplanter. A central sprocket (3) in sprocket box (4) drives left/right gear boxes (5, 5') fixed to the two ends of central shaft (1). Fixed central gear (14, 14') meshes planetary gears (6, 6') fixed to planetary shaft (7, 7') by intermediate gears (11, 11', 13, 13') and planetary gears rotate with unequal speed relatively to gear box. A planting arm (8, 8') is fixed to an end of planetary shaft outside the said gear box, and its absolute motion is synthetic motion of unequal speed rotation of planetary gears relatively to gear box and circumferential motion of gear box relatively to shaft. The gear box is rotated through one cycle, and can make planting arms operating by once. So the said invention can be fitted for working frequency of walking seedling transplanter. Seen from side, the axes A, B, C of the planetary gear train are formed into acute angle of triangle. By optimizing structure parameters, the claws of the planting arms can travel along a path that meets the requirements of getting seedling of the claws, the angle of planting and relatively traveling path, thereby that can ensure small planting holes, reduce falling seedling and floating seedling.

Classes IPC  ?

  • A01C 11/02 - Machines transplanteuses [repiqueuses] pour plants
  • F16H 1/02 - Transmissions à engrenages pour transmettre un mouvement rotatif sans engrenages à mouvement orbital
  • A01B 71/06 - Adaptations particulières de systèmes d'accouplement entre la prise de force et l'arbre de transmission à l'instrument ou à la machine